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		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174917</id>
		<title>Os08g0499300</title>
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				<updated>2014-05-31T05:01:21Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Evolution */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. ''OsWRKY30OX'' plants show enhanced resistance to ''Xoo''.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and ''WRKY30'' overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with ''Rhizoctonia solani''.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of ''OsWRKY30'' in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
''OsWRKY30'' encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen ''M. grisea'' infection, bacterial pathogen ''Xanthomonas oryzae pv. oryzae (Xoo)'' and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene ''OsWRKY45''&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;. WRKY30 is also associated with activated expression of JA synthesis-related genes ''LOX, AOS2'' and pathogenesis-related ''(PR)3'' and ''PR10'', and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of ''WRKY30'' in rice shows enhanced disease resistance to the bacterial pathogen ''Xoo''(fig.1), sheath blight fungus ''Rhizoctonia solani''(fig.2) as well as ''M. oryzae''&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of ''OsWRKY30'' in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the ''WRKY30'' gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
''WRKY30'' exists as a single copy in the rice genome. The transcript levels of ''WRKY30'' are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
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It is first induced at 1 h p.i. in ''cv.Kasalath''. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
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As shown in Fig. 5, the ''WRKY30'' transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of ''OsWRKY30'' gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that ''WRKY'' genes originated from two eukaryotic species, ''Giardia lamblia'' and ''Dictyostelium discoideum'', and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The ''WRKY30'' containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (''Hordeum vulgare''), ''Sorghum bicolor'' and ''Brachypodium sylvaticum''. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, ''Arabidosis thaliana'' (AF418308_1); Bs, ''Brachypodium sylvaticum'' (CAJ26376); Hv, ''Hordeum vulgare'' (ABI13407); Os, ''Oryza sativa'' (ADK13079); Pt, ''Populus trichocarpa'' (XP_002330532); Rc, ''Ricinus communis'' (XP_002529203); Sb, ''Sorghum bicolor'' (XP_002444812); Sl, ''Solanum lycopersicum'' (CAC36402); Ta, ''Triticum aestivum'' (CAJ19358); Vv, ''Vitis vinifera'' (XP_002265612); Zm, ''Zea mays'' (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174914</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174914"/>
				<updated>2014-05-31T04:59:06Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. ''OsWRKY30OX'' plants show enhanced resistance to ''Xoo''.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and ''WRKY30'' overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with ''Rhizoctonia solani''.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of ''OsWRKY30'' in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
''OsWRKY30'' encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen ''M. grisea'' infection, bacterial pathogen ''Xanthomonas oryzae pv. oryzae (Xoo)'' and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene ''OsWRKY45''&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;. WRKY30 is also associated with activated expression of JA synthesis-related genes ''LOX, AOS2'' and pathogenesis-related ''(PR)3'' and ''PR10'', and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of ''WRKY30'' in rice shows enhanced disease resistance to the bacterial pathogen ''Xoo''(fig.1), sheath blight fungus ''Rhizoctonia solani''(fig.2) as well as ''M. oryzae''&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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Overexpression of ''OsWRKY30'' in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the ''WRKY30'' gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
''WRKY30'' exists as a single copy in the rice genome. The transcript levels of ''WRKY30'' are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
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It is first induced at 1 h p.i. in ''cv.Kasalath''. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
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As shown in Fig. 5, the ''WRKY30'' transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of ''OsWRKY30'' gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174911</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174911"/>
				<updated>2014-05-31T04:56:43Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Mutation */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. ''OsWRKY30OX'' plants show enhanced resistance to ''Xoo''.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and ''WRKY30'' overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with ''Rhizoctonia solani''.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of ''OsWRKY30'' in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
''OsWRKY30'' encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen ''M. grisea'' infection, bacterial pathogen ''Xanthomonas oryzae pv. oryzae (Xoo)'' and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene ''OsWRKY45''&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;. WRKY30 is also associated with activated expression of JA synthesis-related genes ''LOX, AOS2'' and pathogenesis-related ''(PR)3'' and ''PR10'', and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of ''WRKY30'' in rice shows enhanced disease resistance to the bacterial pathogen ''Xoo''(fig.1), sheath blight fungus ''Rhizoctonia solani''(fig.2) as well as ''M. oryzae''&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of ''OsWRKY30'' in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
&lt;br /&gt;
2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
&lt;br /&gt;
5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
&lt;br /&gt;
6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174910</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174910"/>
				<updated>2014-05-31T04:55:35Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Function */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. ''OsWRKY30OX'' plants show enhanced resistance to ''Xoo''.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and ''WRKY30'' overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with ''Rhizoctonia solani''.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of ''OsWRKY30'' in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
''OsWRKY30'' encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen ''M. grisea'' infection, bacterial pathogen ''Xanthomonas oryzae pv. oryzae (Xoo)'' and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene ''OsWRKY45''&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;. WRKY30 is also associated with activated expression of JA synthesis-related genes ''LOX, AOS2'' and pathogenesis-related ''(PR)3'' and ''PR10'', and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
&lt;br /&gt;
2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
&lt;br /&gt;
5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
&lt;br /&gt;
6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174903</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174903"/>
				<updated>2014-05-31T04:51:39Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Function */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
''OsWRKY30'' encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
&lt;br /&gt;
2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
&lt;br /&gt;
5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
&lt;br /&gt;
6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=WRKY&amp;diff=174896</id>
		<title>WRKY</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=WRKY&amp;diff=174896"/>
				<updated>2014-05-31T04:44:07Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Brief Introduction */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Brief Introduction==&lt;br /&gt;
* The plant '''''WRKY''''' gene family was first identified from sweet potato by Ishiguro and Nakamura in the year 1994&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;. '''''WRKY''''' gene family members contain one or two highly conserved WRKY domains consisted of approximately 60 amino acids.In this WRKY domain,a conserved WRKYGQK sequence is followed by a C2H2- or C2HC-type of zinc finger motif in the C-terminal region.&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;. They can be classified on the basis of both the number of WRKY domains and the features of their zinc-finger-like motif. WRKY proteins with two WRKY domains are classified into Group I, whereas most proteins with one WRKY domain are classified into Group II. Generally, the WRKY domains of group I and group II members have the same type of finger motif, whose pattern of potential zinc ligands (C–X4–5–C–X22–23–H–X1–H) is unique among all described zinc-finger-like motifs. The single finger motif of a small subset of WRKY proteins is distinct from that of group I and II members. Instead of a C2–H2 pattern, their WRKY domains contain a C2–HC motif (C–X7–C–X23–H–X1–C). Owing to this distinction, they are assigned to the group III. The single WRKY domains of group II and III family members are more similar in sequence to the C-terminal than to the N-terminal WRKY domain of group I proteins, suggesting that the C-terminal and single WRKY domains are functionally equivalent and constitute the major DNA-binding domain. The conservation of the WRKY domain is mirrored by a remarkable conservation of the cognate cis-acting W box elements. These (T)(T)TGAC(C/T) sequence elements contain the invariant TGAC core, which is essential for function and WRKY binding.&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:OsWRKY_Os01g0826400.png|center|thumb|1000px|'''Figure 1.''' ''Protein Structure of '''Os01g082640 ( member of Group I ) ''' '']]&lt;br /&gt;
[[File:OsWRKY_BGIOSGA003851.png|center|thumb|1000px|'''Figure 2.''' ''Protein Structure of '''BGIOSGA003851 ( member of Group II )''' '']]&lt;br /&gt;
* WRKY factors play a important role in responses to abiotic stresses and regulating the pathogen-induced defense program. Some WRKY factors are involved in responses to abiotic stresses and ABA. Some WRKY factors have been reported to be associated with defence-induced mitogen-activated protein kinase (MAPK) signaling cascades as well as disease resistance and responses to salicylic acid. Some WRKY proteins  seem to be involved in some other plant-specific processes, such as trichome development, the biosynthesis of secondary metabolites and senescence&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
* The previous phylogenetic analysis of WRKY domains showed WRKY domains of the same type forming independent domains within their species, suggesting that numerous WRKY gene duplications occurred after the divergence of the monocotyledons from dicotyledons some 50–80 million years ago&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
*'''Pfam: [http://pfam.janelia.org/family/PF03106 PF03106]'''&lt;br /&gt;
&lt;br /&gt;
==''Japonica'' Group==&lt;br /&gt;
{| style=&amp;quot;background:#A1A3A6; width:85%;&amp;quot; border=&amp;quot;0&amp;quot;&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[Os05g0343400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0343400]]'''&lt;br /&gt;
||      &lt;br /&gt;
'''[[Os01g0826400]]'''   &lt;br /&gt;
||   &lt;br /&gt;
'''[[Os07g0583700]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[Os12g0507300]]'''                             &lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!&lt;br /&gt;
'''[[Os08g0499300]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[Os04g0471700]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[Os07g0596900]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0758900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0444900]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os11g0490900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os07g0111400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0665500]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0758000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os09g0481700]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[Os01g0734000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0626400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0102650]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0182700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os04g0545000]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os12g0102300]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0972800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os04g0605100]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0203000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0265200]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os12g0597700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0741400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0584900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os04g0597300]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0855100]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os02g0698800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os10g0579400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0798500]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0246700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0235800]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os01g0730700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0770500]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0276200]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0183100]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0181300]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os01g0714800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os06g0649000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0186000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0462800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os09g0417600]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[Os01g0185900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os09g0417800]]'''&lt;br /&gt;
||      &lt;br /&gt;
'''[[Os06g0158100]]'''   &lt;br /&gt;
||   &lt;br /&gt;
'''[[Os01g0750100]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0386200]]'''                             &lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!&lt;br /&gt;
'''[[Os01g0624700]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[Os09g0334500]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0321900]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0584000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0656400]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os05g0571200]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0335200]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0129800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os07g0680400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0322900]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[Os12g0116400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0116900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0821300]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0117600]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0657400]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os01g0821600]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0321700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os07g0273700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os12g0116600]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0117500]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os11g0117400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0537100]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0198000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0198100]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0565900]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os08g0198900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0685600]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os12g0116700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0289666]]'''&lt;br /&gt;
||&lt;br /&gt;
&lt;br /&gt;
|}&lt;br /&gt;
==''Indica'' Group==&lt;br /&gt;
{| style=&amp;quot;background:#A1A3A6; width:85%;&amp;quot; border=&amp;quot;0&amp;quot;&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[BGIOSGA019646]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017876]]'''&lt;br /&gt;
||      &lt;br /&gt;
'''[[BGIOSGA010657]]'''   &lt;br /&gt;
||   &lt;br /&gt;
'''[[BGIOSGA004722]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA024007]]'''                             &lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!&lt;br /&gt;
'''[[BGIOSGA026734]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA014906]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA023966]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA027300]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA013598]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA036823]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA035675]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA035677]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA033569]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA035289]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[BGIOSGA024948]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017481]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA001069]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA020371]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA029574]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA009781]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA004404]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA004027]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA002245]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA000506]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA005924]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA014617]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA020266]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA005267]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017063]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA007926]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA013535]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA003851]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA013972]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA009380]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA035895]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017037]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA013733]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA020376]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA027404]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA003134]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA000873]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA033505]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA008866]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA009118]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[BGIOSGA000921]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA018854]]'''&lt;br /&gt;
||      &lt;br /&gt;
'''[[BGIOSGA000826]]'''   &lt;br /&gt;
||   &lt;br /&gt;
'''[[BGIOSGA022298]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA018676]]'''                             &lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!&lt;br /&gt;
'''[[BGIOSGA007670]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA020778]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA002237]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA036825]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA008165]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA029758]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA002913]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA029757]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA001327]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA019117]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[BGIOSGA030067]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA022355]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA021174]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA019119]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA018171]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA001178]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA019620]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA020451]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA030535]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA030346]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA001093]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA025645]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA004701]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA012571]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA019621]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA034616]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA036760]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA023706]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA004704]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA034615]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA036759]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA000583]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017860]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA034611]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA036755]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA004703]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA010118]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA004705]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA012525]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA012523]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA017556]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA014615]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA003306]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA030113]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA036757]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA034613]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA034612]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA036756]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA027491]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017861]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA027492]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA027489]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA032700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA027488]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA014175]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA035288]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017690]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA020403]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA001176]]'''&lt;br /&gt;
||&lt;br /&gt;
&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Ishiguro S, Nakamura K. Characterization of a cDNA encoding a novel DNA-binding protein, SPF1, that recognizes SP8 sequences in the 5' upstream regions of genes coding for sporamin and beta-amylase from sweet potato. Mol Gen Genet. 1994 Sep 28;244(6):563-71.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Eulgem T, Rushton P J, Robatzek S, et al. The WRKY superfamily of plant transcription factors[J]. Trends in plant science, 2000, 5(5): 199-206.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Ülker B, Somssich I E. WRKY transcription factors: from DNA binding towards biological function[J]. Current opinion in plant biology, 2004, 7(5): 491-498.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Ross C A, Liu Y, Shen Q J. The WRKY gene family in rice (Oryza sativa)[J]. Journal of Integrative Plant Biology, 2007, 49(6): 827-842.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;&lt;br /&gt;
Ramamoorthy R, Jiang S Y, Kumar N, et al. A comprehensive transcriptional profiling of the WRKY gene family in rice under various abiotic and phytohormone treatments[J]. Plant and cell physiology, 2008, 49(6): 865-879.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;&lt;br /&gt;
Xie Z, Zhang Z L, Zou X, et al. Annotations and functional analyses of the rice WRKY gene superfamily reveal positive and negative regulators of abscisic acid signaling in aleurone cells[J]. Plant physiology, 2005, 137(1): 176-189.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;&lt;br /&gt;
Wu K L, Guo Z J, Wang H H, et al. The WRKY family of transcription factors in rice and Arabidopsis and their origins[J]. DNA research, 2005, 12(1): 9-26.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=WRKY&amp;diff=174883</id>
		<title>WRKY</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=WRKY&amp;diff=174883"/>
				<updated>2014-05-31T04:30:31Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Brief Introduction */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;==Brief Introduction==&lt;br /&gt;
* The plant '''''WRKY''''' gene family was first identified from sweet potato by Ishiguro and Nakamura in the year 1994&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;. '''''WRKY''''' gene family members contain one or two highly conserved WRKY domains consisted of approximately 60 amino acids.In this WRKY domain,a conserved WRKYGQK sequence is followed by a C2H2- or C2HC-type of zinc finger motif in the C-terminal region.&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;. They can be classified on the basis of both the number of WRKY domains and the features of their zinc-finger-like motif. WRKY proteins with two WRKY domains were classified into Group I, whereas most proteins with one WRKY domain were classified into Group II. Generally, the WRKY domains of group I and group II members have the same type of finger motif, whose pattern of potential zinc ligands (C–X4–5–C–X22–23–H–X1–H) is unique among all described zinc-finger-like motifs. The single finger motif of a small subset of WRKY proteins is distinct from that of group I and II members. Instead of a C2–H2 pattern, their WRKY domains contain a C2–HC motif (C–X7–C–X23–H–X1–C). Owing to this distinction, they were recently assigned to the newly defined group III. The single WRKY domains of group II and III family members are more similar in sequence to the Cterminal than to the N-terminal WRKY domain of group I proteins, suggesting that the C-terminal and single WRKY domains are functionally equivalent and constitute the major DNA-binding domain. The conservation of the WRKY domain is mirrored by a remarkable conservation of the cognate cis-acting W box elements. These (T)(T)TGAC(C/T) sequence elements contain the invariant TGAC core, which is essential for function and WRKY binding.&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:OsWRKY_Os01g0826400.png|center|thumb|1000px|'''Figure 1.''' ''Protein Structure of '''Os01g082640 ( member of Group I ) ''' '']]&lt;br /&gt;
[[File:OsWRKY_BGIOSGA003851.png|center|thumb|1000px|'''Figure 2.''' ''Protein Structure of '''BGIOSGA003851 ( member of Group II )''' '']]&lt;br /&gt;
* WRKY factors play a important role in responses to abiotic stresses and regulating the pathogen-induced defense program. Some WRKY factors have been reported to be associated with defence-induced mitogen-activated protein kinase (MAPK) signaling cascades. Some WRKY proteins  seem to be involved in some other plant-specific processes, such as trichome development, the biosynthesis of secondary metabolites and senecence&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
* The previous phylogenetic analysis of WRKY domains showed WRKY domains of the same type forming independent domains within their species, suggesting that numerous WRKY gene duplications occurred after the divergence of the monocotyledons from dicotyledons some 50–80 million years ago&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
*'''Pfam: [http://pfam.janelia.org/family/PF03106 PF03106]'''&lt;br /&gt;
&lt;br /&gt;
==''Japonica'' Group==&lt;br /&gt;
{| style=&amp;quot;background:#A1A3A6; width:85%;&amp;quot; border=&amp;quot;0&amp;quot;&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[Os05g0343400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0343400]]'''&lt;br /&gt;
||      &lt;br /&gt;
'''[[Os01g0826400]]'''   &lt;br /&gt;
||   &lt;br /&gt;
'''[[Os07g0583700]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[Os12g0507300]]'''                             &lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!&lt;br /&gt;
'''[[Os08g0499300]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[Os04g0471700]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[Os07g0596900]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0758900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0444900]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os11g0490900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os07g0111400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0665500]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0758000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os09g0481700]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[Os01g0734000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0626400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0102650]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0182700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os04g0545000]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os12g0102300]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0972800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os04g0605100]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0203000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0265200]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os12g0597700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0741400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0584900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os04g0597300]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0855100]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os02g0698800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os10g0579400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0798500]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0246700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0235800]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os01g0730700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0770500]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0276200]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0183100]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0181300]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os01g0714800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os06g0649000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0186000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os02g0462800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os09g0417600]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[Os01g0185900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os09g0417800]]'''&lt;br /&gt;
||      &lt;br /&gt;
'''[[Os06g0158100]]'''   &lt;br /&gt;
||   &lt;br /&gt;
'''[[Os01g0750100]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0386200]]'''                             &lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!&lt;br /&gt;
'''[[Os01g0624700]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[Os09g0334500]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0321900]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0584000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0656400]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os05g0571200]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0335200]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0129800]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os07g0680400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0322900]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[Os12g0116400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0116900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0821300]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0117600]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0657400]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os01g0821600]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os03g0321700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os07g0273700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os12g0116600]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0117500]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os11g0117400]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0537100]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0198000]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os08g0198100]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os05g0565900]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[Os08g0198900]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os11g0685600]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os12g0116700]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[Os01g0289666]]'''&lt;br /&gt;
||&lt;br /&gt;
&lt;br /&gt;
|}&lt;br /&gt;
==''Indica'' Group==&lt;br /&gt;
{| style=&amp;quot;background:#A1A3A6; width:85%;&amp;quot; border=&amp;quot;0&amp;quot;&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[BGIOSGA019646]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017876]]'''&lt;br /&gt;
||      &lt;br /&gt;
'''[[BGIOSGA010657]]'''   &lt;br /&gt;
||   &lt;br /&gt;
'''[[BGIOSGA004722]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA024007]]'''                             &lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!&lt;br /&gt;
'''[[BGIOSGA026734]]''' &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA014906]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA023966]]'''  &lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA027300]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA013598]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA036823]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA035675]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA035677]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA033569]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA035289]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[BGIOSGA024948]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017481]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA001069]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA020371]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA029574]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA009781]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA004404]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA004027]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA002245]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA000506]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA005924]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA014617]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA020266]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA005267]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017063]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA007926]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA013535]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA003851]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA013972]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA009380]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA035895]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA017037]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA013733]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA020376]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA027404]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
!  &lt;br /&gt;
'''[[BGIOSGA003134]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA000873]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA033505]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA008866]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA009118]]'''&lt;br /&gt;
|-style=&amp;quot;background:white; color:black&amp;quot; align=&amp;quot;center&amp;quot;&lt;br /&gt;
! &lt;br /&gt;
'''[[BGIOSGA000921]]'''&lt;br /&gt;
||&lt;br /&gt;
'''[[BGIOSGA018854]]'''&lt;br /&gt;
||      &lt;br /&gt;
'''[[BGIOSGA000826]]'''   &lt;br /&gt;
||   &lt;br /&gt;
'''[[BGIOSGA022298]]''' &lt;br /&gt;
||&lt;br /&gt;
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==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Ishiguro S, Nakamura K. Characterization of a cDNA encoding a novel DNA-binding protein, SPF1, that recognizes SP8 sequences in the 5' upstream regions of genes coding for sporamin and beta-amylase from sweet potato. Mol Gen Genet. 1994 Sep 28;244(6):563-71.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Eulgem T, Rushton P J, Robatzek S, et al. The WRKY superfamily of plant transcription factors[J]. Trends in plant science, 2000, 5(5): 199-206.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Ülker B, Somssich I E. WRKY transcription factors: from DNA binding towards biological function[J]. Current opinion in plant biology, 2004, 7(5): 491-498.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Ross C A, Liu Y, Shen Q J. The WRKY gene family in rice (Oryza sativa)[J]. Journal of Integrative Plant Biology, 2007, 49(6): 827-842.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;&lt;br /&gt;
Ramamoorthy R, Jiang S Y, Kumar N, et al. A comprehensive transcriptional profiling of the WRKY gene family in rice under various abiotic and phytohormone treatments[J]. Plant and cell physiology, 2008, 49(6): 865-879.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;&lt;br /&gt;
Xie Z, Zhang Z L, Zou X, et al. Annotations and functional analyses of the rice WRKY gene superfamily reveal positive and negative regulators of abscisic acid signaling in aleurone cells[J]. Plant physiology, 2005, 137(1): 176-189.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
* &amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;&lt;br /&gt;
Wu K L, Guo Z J, Wang H H, et al. The WRKY family of transcription factors in rice and Arabidopsis and their origins[J]. DNA research, 2005, 12(1): 9-26.&lt;br /&gt;
&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174798</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174798"/>
				<updated>2014-05-31T02:16:36Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: Undo revision 174794 by Zhong6937991 (talk)&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
&lt;br /&gt;
2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
&lt;br /&gt;
5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
&lt;br /&gt;
6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174794</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174794"/>
				<updated>2014-05-31T02:13:25Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Function */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
&lt;br /&gt;
2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174073</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174073"/>
				<updated>2014-05-29T13:59:29Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
&lt;br /&gt;
2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
&lt;br /&gt;
5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
&lt;br /&gt;
6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174072</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174072"/>
				<updated>2014-05-29T13:58:58Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
&lt;br /&gt;
2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
&lt;br /&gt;
5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
&lt;br /&gt;
6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174068</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174068"/>
				<updated>2014-05-29T13:56:26Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
&lt;br /&gt;
2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
&lt;br /&gt;
5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
&lt;br /&gt;
6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174067</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174067"/>
				<updated>2014-05-29T13:44:06Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
&lt;br /&gt;
2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
&lt;br /&gt;
5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
&lt;br /&gt;
6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174066</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174066"/>
				<updated>2014-05-29T13:43:16Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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8.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174065</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174065"/>
				<updated>2014-05-29T13:42:35Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
{| class='wikitable' style=&amp;quot;text-align:center&amp;quot;&lt;br /&gt;
|-&lt;br /&gt;
! | Primer&lt;br /&gt;
! | Forward primer&lt;br /&gt;
! | Reverse primer&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;2&amp;quot;|3'end amplication&lt;br /&gt;
| | 5'-AAAAAGCAGGCTACATGCAGATGATCTCCAAG-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTGCTCTTGACCATGGAATGGA-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-AAAAAGCAGGCTTCATGGACGGGACCAACAAC-3'&lt;br /&gt;
| | 5'-AGAAAGCTGGGTTCATCTGAGGATGCTGCTTT-3'&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| rowspan=&amp;quot;4&amp;quot;|RT-PCR&lt;br /&gt;
| | 5'-CTACCAATGGTCTTCTTCACC-3'&lt;br /&gt;
| | 5'-GTTCACCTTCATCTCACCTCT-3' &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-TTGGGATTGTCACCTTTTCATG-3'&lt;br /&gt;
| | 5'-TTTTACATCTGAGGATGCTGC-3' &amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-GATGATGGTTACCGTTGGCG-3'&lt;br /&gt;
| | 5'-CTCAGTTTGGCTATGGCTCA-3' &amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;&lt;br /&gt;
|-&lt;br /&gt;
| | 5'-CAGGCTACCAATGGTCTTCTTCA-3'&lt;br /&gt;
| | 5'-GCTACAATAACACTCCATTCTCC-3' &amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;&lt;br /&gt;
|}&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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8.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174064</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174064"/>
				<updated>2014-05-29T13:32:37Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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8.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174063</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174063"/>
				<updated>2014-05-29T13:32:11Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
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1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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8.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174062</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174062"/>
				<updated>2014-05-29T13:31:21Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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8.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174061</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174061"/>
				<updated>2014-05-29T13:27:32Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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3.	&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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4.	&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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5.	&amp;lt;ref name=&amp;quot;ref5&amp;quot;&amp;gt;Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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6.	&amp;lt;ref name=&amp;quot;ref6&amp;quot;&amp;gt;彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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7.	&amp;lt;ref name=&amp;quot;ref7&amp;quot;&amp;gt;Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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8.	&amp;lt;ref name=&amp;quot;ref8&amp;quot;&amp;gt;Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174060</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174060"/>
				<updated>2014-05-29T13:24:53Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
&amp;lt;references&amp;gt;&lt;br /&gt;
1.	&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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7.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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8.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174059</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174059"/>
				<updated>2014-05-29T13:21:30Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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7.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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8.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174058</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174058"/>
				<updated>2014-05-29T13:20:22Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Evolution */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174057</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174057"/>
				<updated>2014-05-29T13:19:03Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref7&amp;quot; /&amp;gt;.&lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174056</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174056"/>
				<updated>2014-05-29T13:14:47Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.&lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174055</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174055"/>
				<updated>2014-05-29T13:13:19Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)&amp;lt;ref name=&amp;quot;ref8&amp;quot; /&amp;gt;.[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)&amp;lt;ref name=&amp;quot;ref6&amp;quot; /&amp;gt;.&lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174053</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174053"/>
				<updated>2014-05-29T13:11:45Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Mutation */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174052</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174052"/>
				<updated>2014-05-29T13:11:08Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Mutation */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174051</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174051"/>
				<updated>2014-05-29T13:10:20Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Function */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref5&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174049</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174049"/>
				<updated>2014-05-29T13:08:50Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Function */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174048</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=174048"/>
				<updated>2014-05-29T13:07:37Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Function */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168164</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168164"/>
				<updated>2014-05-11T03:42:11Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Evolution */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0% and 56.0%, respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168163</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168163"/>
				<updated>2014-05-11T03:41:20Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Evolution */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0%and 56.0%,respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168143</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168143"/>
				<updated>2014-05-11T02:29:46Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0%and56.0%,respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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8.	彭喜旭, 胡耀军, 唐新科, 周平兰, 邓小波,&amp;amp;王海华 (2011). 茉莉酸和真菌病原诱导的水稻 WRKY30转录因子基因的分离及表达特征. 中国农业科学 44, 2454-2461.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168140</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168140"/>
				<updated>2014-05-11T02:24:52Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Evolution */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
It is hypothesized that WRKY genes originated from two eukaryotic species, Giardia lamblia and Dictyostelium discoideum, and have since then been greatly amplified in plant species[2]. The WRKY30 containes an entire ORF in length of 2022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0%and56.0%,respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168139</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168139"/>
				<updated>2014-05-11T02:09:57Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Evolution */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
The WRKY30 containes an entire ORF in length of 2 022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0%and56.0%,respectively(fig8)[8].[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168138</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168138"/>
				<updated>2014-05-11T02:09:10Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Evolution */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
The WRKY30 containes an entire ORF in length of 2 022 bp and encodes a protein of 674 amino acid residues consisting of two WRKY domains each with a zinc finger motif of C2H2 and a nuclear localization signal, belonging to the WRKY subgroup I. WRKY30 shares high amino acid sequence identity with those from monocots such as wheat (Hordeum vulgare), Sorghum bicolor and Brachypodium sylvaticum. The identity are 61.2%,57.0%and56.0%,respectively(fig8).[[File:Fig.10.jpg|200px|thumb|right|Fig. 8 Phylogenetic tree of WRKY30 with WRKY proteins from other species. At, Arabidosis thaliana (AF418308_1); Bs, Brachypodium sylvaticum (CAJ26376); Hv, Hordeum vulgare (ABI13407); Os, Oryza sativa (ADK13079); Pt, Populus trichocarpa (XP_002330532); Rc, Ricinus communis (XP_002529203); Sb, Sorghum bicolor (XP_002444812); Sl, Solanum lycopersicum (CAC36402); Ta, Triticum aestivum (CAJ19358); Vv, Vitis vinifera (XP_002265612); Zm, Zea mays (NP_001169214)]] &lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.10.jpg&amp;diff=168137</id>
		<title>File:Fig.10.jpg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.10.jpg&amp;diff=168137"/>
				<updated>2014-05-11T02:02:21Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168136</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168136"/>
				<updated>2014-05-11T01:57:19Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[8][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
&lt;br /&gt;
It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
Please input evolution information here.&lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
&lt;br /&gt;
2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168135</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168135"/>
				<updated>2014-05-11T01:56:24Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
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&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[7][[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
Please input evolution information here.&lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168134</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168134"/>
				<updated>2014-05-11T01:54:32Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.7)[[File:Fig.9.jpg|200px|thumb|right|Fig. 7 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
Please input evolution information here.&lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168133</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168133"/>
				<updated>2014-05-11T01:52:51Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
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Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
WRKY30 exists as a single copy in the rice genome. The transcript levels of WRKY30 are relatively high in stem, leaf and grain, next are root and panicle, and the least was flower(fig.9)[[File:Fig.9.jpg|200px|thumb|left|Fig. 9 Expression patterns of WRKY30 in different rice organs]] . &lt;br /&gt;
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It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
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As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
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The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
Please input evolution information here.&lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
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2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
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3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
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4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
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5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
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6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
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7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.9.jpg&amp;diff=168132</id>
		<title>File:Fig.9.jpg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.9.jpg&amp;diff=168132"/>
				<updated>2014-05-11T01:50:50Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168055</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168055"/>
				<updated>2014-05-10T13:28:57Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* References */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
OsWRKY30 is mostly expressed in rice leaves. It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
Please input evolution information here.&lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
&lt;br /&gt;
3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
&lt;br /&gt;
4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
&lt;br /&gt;
5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
&lt;br /&gt;
6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
1.	Eulgem, T., Rushton, P. J., Robatzek, S., &amp;amp; Somssich, I. E. (2000). The WRKY superfamily of plant transcription factors. Trends in plant science, 5(5), 199-206.&lt;br /&gt;
&lt;br /&gt;
2.	Ryu, H. S., Han, M., Lee, S. K., Cho, J. I., Ryoo, N., Heu, S., ... &amp;amp; Jeon, J. S. (2006). A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response. Plant cell reports, 25(8), 836-847.&lt;br /&gt;
&lt;br /&gt;
3.	Han, M., Ryu, H. S., Kim, C. Y., Park, D. S., Ahn, Y. K., &amp;amp; Jeon, J. S. (2013). OsWRKY30 is a transcription activator that enhances rice resistance to the Xanthomonas oryzae pathovar oryzae. Journal of Plant Biology, 56(4), 258-265.&lt;br /&gt;
&lt;br /&gt;
4.	Peng, X., Hu, Y., Tang, X., Zhou, P., Deng, X., Wang, H., &amp;amp; Guo, Z. (2012). Constitutive expression of rice WRKY30 gene increases the endogenous jasmonic acid accumulation, PR gene expression and resistance to fungal pathogens in rice. Planta, 236(5), 1485-1498.&lt;br /&gt;
&lt;br /&gt;
5.	Shen, H., Liu, C., Zhang, Y., Meng, X., Zhou, X., Chu, C., &amp;amp; Wang, X. (2012). OsWRKY30 is activated by MAP kinases to confer drought tolerance in rice. Plant molecular biology, 80(3), 241-253.&lt;br /&gt;
&lt;br /&gt;
6.	Liu, X., Li, Y., Wang, L., Liu, X., Wang, C., Wang, L., &amp;amp; Pan, Q. (2010). The effect of the rice blast resistance gene Pi36 on the expression of disease resistance-related genes. Chinese Science Bulletin, 55(18), 1881-1888.&lt;br /&gt;
&lt;br /&gt;
7.	Lee, H., Ko, Y. J., Cha, J. Y., Park, S. R., Ahn, I., &amp;amp; Hwang, D. J. (2013). The C-terminal region of OsWRKY30 is sufficient to confer enhanced resistance to pathogen and activate the expression of defense-related genes. Plant Biotechnology Reports, 7(3), 221-230.&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168054</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168054"/>
				<updated>2014-05-10T13:27:56Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Labs working on this gene */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
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===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
OsWRKY30 is mostly expressed in rice leaves. It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
Please input evolution information here.&lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
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==Labs working on this gene==&lt;br /&gt;
1.	Graduate School of Biotechnology &amp;amp; Plant Metabolism Research Center, Kyung Hee University, Yongin 449-701, Korea.&lt;br /&gt;
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2.	Key Biotechnology Laboratory of State Ethnic Affairs Commission, College of Life Science, South-Central University for Nationalities, Wuhan 430074, China.&lt;br /&gt;
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3.	Laboratory of Plant Resistance and Genetics, College of Resources and Environmental Sciences, South China Agricultural University, Guangzhou 510642, China.&lt;br /&gt;
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4.	National Academy of Agricultural Science, Rural Development Administration, Suwon 440-707, Korea.&lt;br /&gt;
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5.	School of Life Sciences, Hunan University of Science and Technology, Taoyuan Rd., Xiangtan 411201, Hunan, China&lt;br /&gt;
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6.	National Engineering Research Center for Molecular Crop Design, Beijing Weiming Kaituo Agriculture Biotech Co., Ltd, Beijing 100085, People’s Republic of China.&lt;br /&gt;
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==References==&lt;br /&gt;
Please input cited references here.&lt;br /&gt;
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==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168053</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168053"/>
				<updated>2014-05-10T13:13:44Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
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==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
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WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
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OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
OsWRKY30 is mostly expressed in rice leaves. It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.8.png]]&lt;br /&gt;
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===Evolution===&lt;br /&gt;
Please input evolution information here.&lt;br /&gt;
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You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
Please input related labs here.&lt;br /&gt;
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==References==&lt;br /&gt;
Please input cited references here.&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.8.png&amp;diff=168052</id>
		<title>File:Fig.8.png</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.8.png&amp;diff=168052"/>
				<updated>2014-05-10T13:13:25Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.7.png&amp;diff=168051</id>
		<title>File:Fig.7.png</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.7.png&amp;diff=168051"/>
				<updated>2014-05-10T13:11:33Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: uploaded a new version of &amp;amp;quot;File:Fig.7.png&amp;amp;quot;&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.7.png&amp;diff=168050</id>
		<title>File:Fig.7.png</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.7.png&amp;diff=168050"/>
				<updated>2014-05-10T13:08:18Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: uploaded a new version of &amp;amp;quot;File:Fig.7.png&amp;amp;quot;&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168049</id>
		<title>Os08g0499300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os08g0499300&amp;diff=168049"/>
				<updated>2014-05-10T13:01:46Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: /* Expression */&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Please input one-sentence summary here.&lt;br /&gt;
&lt;br /&gt;
==Annotated Information==&lt;br /&gt;
===Function===&lt;br /&gt;
[[File:Fig.1.png|200px|thumb|right|Fig.1 A representative photograph taken at twelve days after inoculation. OsWRKY30OX plants show enhanced resistance to Xoo.]][[File:Fig.2.png|200px|thumb|right|Fig.2 Disease symptoms in wild-type (WT) and WRKY30 overexpression (lines 2-3 and 17-2) plants at 7 days after inoculation (DPI) with Rhizoctonia solani.]][[File:Fig.3.png|200px|thumb|right|Fig.3 Overexpression of OsWRKY30 in rice exhibited more tolerance to water deficit stress than did wild type plants.]]&lt;br /&gt;
OsWRKY30 encodes a protein named WRKY30 transcription factor, which is a member of Group Ia of rice WRKY family with two DNA-binding domains, designated the WRKY domain, containing a highly conserved WRKYGQK residue as well as a novel zinc finger motif. Both the conserved elements of the domain are necessary for high binding affinity of WRKY30 to a canonical W-box containing a sequence of TTGACC/T [1][2].&lt;br /&gt;
&lt;br /&gt;
WRKY30 is rapidly induced by pathogen M. grisea infection, bacterial pathogen Xanthomonas oryzae pv. oryzae (Xoo) and related phytohormones SA and JA [2]. OsWRKY30 functions as a positive regulator of rice disease resistance via an SA signaling pathway. It can up-regulate the SA-responsive gene OsWRKY45[3].WRKY30 is also associated with activated expression of JA synthesis-related genes LOX, AOS2 and pathogenesis-related (PR)3 and PR10, and increased endogenous JA accumulation under the challenge of fungal pathogens[4].&lt;br /&gt;
&lt;br /&gt;
OsWRKY30 is also involved drought tolerance. OsWRKY30 interacts with the rice mitogen-activated protein kinases(MAPKs), OsMPK3, OsMPK4, OsMPK7, OsMPK14, OsMPK20-4 and OsMPK20-5, and can be phosphorylated by OsMPK3, OsMPK7, and OsMPK14[5].&lt;br /&gt;
&lt;br /&gt;
===Mutation===&lt;br /&gt;
Overexpression of WRKY30 in rice shows enhanced disease resistance to the bacterial pathogen Xoo(fig.1), sheath blight fungus Rhizoctonia solani(fig.2) as well as M. oryzae[3][4].&lt;br /&gt;
 &lt;br /&gt;
Overexpression of OsWRKY30 in rice dramatically increased drought tolerance(fig.3). Mutations in the phosphorylation target sites of OsWRKY30 have been shown to cause the loss of function of drought tolerance. That result suggests that OsWRKY30 phosphorylation is important for its biological functions in defense responses to abiotic stress[5].&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig.4.png|200px|thumb|right|Fig.4 The expression of OsWRKY30 induced by blast infection in the presence of Pi36.]][[File:Fig.5.png|200px|thumb|right|Fig.5 Induced expression of the WRKY30 gene. Plants are treated with salicylic acid (SA) and methyl jasmonate (MeJA).]][[File:Fig.6.png|200px|thumb|right|Fig.6 Expression analysis of OsWRKY30 under stress and hormone treatments.  A. Expression level of OsWRKY30 under 100 uM ABA treatment (time course: 0,1, 3, 6, 12, and 24 h).  B. Expression level of OsWRKY30 under drought stress (time course: 0, 1, 3, 6,12, and 24 h).]]&lt;br /&gt;
OsWRKY30 is mostly expressed in rice leaves. It is first induced at 1 h p.i. in cv.Kasalath. Its expression level increased up to maximum by 24 h p.i., decreased slightly by 48 h p.i., produced a second peak around 72 h p.i., and finally declined by 96 h p.i.(fig.4)[6]. &lt;br /&gt;
&lt;br /&gt;
As shown in Fig. 5, the WRKY30 transcripts began to accumulate at 1 h and strongly increased during 6–12 h after MeJA treatment, followed by a sharp decrease to the background level at 24 h. Also, the expression of WRKY30 increased rapidly but modestly within 1 h, continued to increase at 6 h, and maintained at a steady level till 24 h after SA treatment[4].&lt;br /&gt;
&lt;br /&gt;
The expression of OsWRKY30 is induced after treatments with ABA and drought stress (Fig. 6). The expression of OsWRKY30 gene is investigated using Real-time PCR. OsWRKY30 is significantly increased by treatments with 100 uM ABA, and the expression reached the highest expression (by 13.7 times) at 12 h after treatments (Fig. 6A). A similar OsWRKY30 expression pattern is found after drought stress treatments (Fig. 6B)[5].&lt;br /&gt;
[[File:Fig.7.png]]&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
Please input evolution information here.&lt;br /&gt;
&lt;br /&gt;
You can also add sub-section(s) at will.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
Please input related labs here.&lt;br /&gt;
&lt;br /&gt;
==References==&lt;br /&gt;
Please input cited references here.&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os08g0499300|&lt;br /&gt;
Description = WRKY transcription factor 30|&lt;br /&gt;
Version = NM_001068683.1 GI:115477103 GeneID:4345940|&lt;br /&gt;
Length = 3901 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os08g0499300, complete gene.|&lt;br /&gt;
Source = Oryza sativa Japonica Group&lt;br /&gt;
&lt;br /&gt;
  ORGANISM  Oryza sativa Japonica Group&lt;br /&gt;
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;&lt;br /&gt;
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP&lt;br /&gt;
            clade; Ehrhartoideae; Oryzeae; Oryza.&lt;br /&gt;
|&lt;br /&gt;
Chromosome = [[:category:Japonica Chromosome 8|Chromosome 8]]|&lt;br /&gt;
AP = Chromosome 8:24733937..24737837|&lt;br /&gt;
CDS = 24734071..24734572,24734775..24734960,24735048..24735790,24735956..24736117,24736388..24736819&amp;lt;br&amp;gt;|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage1&amp;gt;|&lt;br /&gt;
GSID = &amp;lt;gbrowseImage2&amp;gt;&lt;br /&gt;
name=NC_008401:24733937..24737837&lt;br /&gt;
source=RiceChromosome08&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MDGTNNHGALMDDWMLPSPSPRTLMSSFLNEEFSSGPFSDIFCD                     NGSNKHQDGLGKSKAFIDSSREETAQLAKKFESNLFGANQKSSSNGCLSERMAARTGF                     GVLKIDTSRVGYSTPIRSPVTIPPGVSPRELLESPVFLPNAIAQPSPTTGKLPFLMHS                     NVKPSIPKKTEDETRHDRVFFFQPILGSKPPTCPVAEKGFSVNHQNQPSVTDNHQELS                     LQSSSTAAKDFTSATIVKPKTSDSMLDNDDHPSPANDQEENATNKNEEYSSDLIITPA                     EDGYNWRKYGQKQVKNSEHPRSYYKCTFTNCAVKKVERSQDGQITEIVYKGSHNHPLP                     PSNRRPNVPFSHFNDLRDDHSEKFGSKSGQATATSWENAANGHLQDVGSEVLTKLSAS                     LTTTEHAEKSVMDKQEAVDISSTLSNEEDDRVTHRAPLSLGFDANDDYVEHKRRKMDV                     YAATSTSTNAIDIGAVASRAIREPRVVVQTTSEVDILDDGYRWRKYGQKVVKGNPNPR                     SYYKCTHPGCSVRKHVERSSHDLKSVITTYEGKHNHEVPAARNSGHPSSGSAAAPQAT                     NGLLHRRPEPAQGGGGGSLAQFGYGSAGHRPAEQFGAAAAGFSFGMLPRSIATPAPSP                     AIAVPAMQGYPGLVLPRGEMKVNLLPQSGNAGAAASQQLMGRLPKQHPQM&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;3266..3767#2878..3063#2048..2790#1721..1882#1019..1450#tccttcgcttcaccacctcgccaaaaccgccttcccttcccttctcttcccttccaacctctcgttgcggtttgcgctagaaaaaaaagagaggagagatttcaagaaaccgtgggggagaaagaagcaggcaagaagtagcagcagcagcgagtgaggctaatctggtcagtttcagaacagattctttgttcggtctctatccattgcaagaacaggttttgttttttcttttccctttttttgggatcagagtctctccatttctgatgctgctgctgctgctgatgatgatgatgatgcaaggcttgtggcaacttgtttggtgaaagaacaacgagagggatactgggatagggatcaaaggcaaaggtttttgtttttaccccgtggtaattgttcgttcggtttgtgatgggatagttgctgggactgtgaatcattttgccccttcttatcatacagacaggcgcgtgatttgaccagcttgtcgtctctgctctgcctctatccatccatccattcatacatccaaccttgggggttcttgattctttttctcatttcttggggaggcttaattgttgctatcgccctccgcttcaggtgtccatttgaattcttcgtcgtttctttcgtatttaattgccatttgctgatttgcctctttatttcggtgggttttatggtaataaaggtgtggttcctttatcatcaaatttgaggtgttctgggttttctttggttcttttttggagcactggatttgtgtgctcttgtaaatcaaatagagtttgtggtttggttcgtattttacacaatcgagttgtgtttttattttagtttgtatcgaaatatttgcatacttgtttctagttccttcaggcttcagttctcttcattattataaaaaaaaatttggtcctttcgtccataatttttttcacaattccatttttgaatgtatgagcttgaattatgtgacttttcagtttgagcttgggattgtcaccttttcatggacgggaccaacaaccatggagcactgatggacgattggatgcttccctcacccagtccaagaacactcatgtcgagtttcttgaacgaagaattcagctccggtcccttttcagacattttctgtgataatggcagtaacaaacatcaggatggacttgggaagagcaaagctttcatcgattcaagccgggaagaaactgctcagctagcaaaaaagtttgaatcaaacctttttggtgccaaccagaaatcaagctcaaatggctgtctgtcagagaggatggctgcaaggacaggttttggtgtcctgaaaattgatacatctcgtgtcggttattctacaccgattcggtctccggtgacgatcccgcccggtgtgagtccaagggaacttcttgagtcgccggtttttcttccgaacgccattgtaagtgacttcctcacctcaatcagtatttgctctgtgtaatgttcagttactctactcatgtggtttatatggaggatatatttgtcagtaaatggtgaaatctaaaccaagatacctattataaaaaatattctaacgcaagatacagcatctttaatttctcttatgtctctgcagcttcgtataattagtggaattttggagaagaaagtgactatatatgttgatgactgattaatcttaatgtcatggttttgatttatgcaggcacaaccttctcctaccactggcaaactgccatttttgatgcatagtaatgttaaaccatcgatccctaaaaaaactgaagatgaaacacgccatgatcgtgtattcttctttcaacccattttgggatctaagccaccaacttgtccagttgcagagaaggtagttttctcaaacaatgttgttctattccctatttactgcaaatctgtaatcactgctcgcctgctcggcgcagtttgttttactgttccagcaaatctgacgagcaaaatcaaattatcagtgttttttatgcattggtctgatgatatttatacttttcagggtttcagtgttaatcatcaaaaccagccttcagtgacggataatcaccaggagctcagtcttcagtctagctcaactgcagccaaggatttcacttcagcaactattgttaaacctaagacatctgattccatgttagacaatgatgatcacccttcccctgcaaatgatcaagaagagaatgcaacaaacaaaaatgaagagtattcttcagacctgatcattacccctgctgaggatggatataactggaggaaatatggacagaagcaagttaagaacagtgagcatcccagaagctactacaaatgcactttcacgaattgcgctgtcaagaaggtggagcgttctcaagatggccaaataacagagatagtctacaaaggttctcacaatcaccctttgccgccttccaaccgccgaccaaatgttcctttctcacacttcaatgatctgagagatgatcactctgagaaatttggttccaagtctggtcaggccacagcaacttcatgggagaatgccgcaaatggacacctccaagatgtcggtagtgaagttctgacaaaactgtctgcttctcttacgacaacagaacatgctgaaaaatctgttatggacaaacaagaagctgtggatatctcatcgacgctctccaatgaagaggatgatagggtaacgcatcgtgccccgctttctctgggctttgatgcgaacgatgactatgttgaacacaagagaaggttggctagccttagtcactaatcactcaatgaaccaatcttcactttgagtagctgattgttttccttcaattttattcatttcagaaagatggatgtttatgccgctactagcactagcaccaacgccatcgacataggagctgtggcgtcaagagctatccgggagcctcgcgttgttgttcagaccacaagtgaggttgacatccttgatgatggttaccgttggcgcaagtatgggcagaaagttgtcaaaggaaacccaaatccaaggtcaattctaatgccatttttctcttttggaacaaattctttgcagttcctctaatccttcactacaaaagtaaatgtttagcttcacaatatgacactgtcatcgaaggaacatttctctgtccatatgtgtgcatccatagttggtacaaagaccggaaattactcgcattatctaaaaaactccattttgtatttgcaggagctactacaagtgcactcatccgggttgctcggtgcgcaagcatgtggagcgatcatcgcatgatctgaaatccgtcatcacgacgtatgaaggaaagcacaaccatgaagttccagctgccaggaacagtggccacccaagctcaggctcagccgctgcaccacaggctaccaatggtcttcttcaccggagacctgaaccggcacaaggtggtggtggtggtagccttgctcagtttggctatggctcagctggtcacagaccagcagagcagtttggtgcagcagcagctggtttctcctttggaatgctgcctcgtagcattgcaactccggcgccgtctccggcgatcgccgtgccggcgatgcaggggtacccagggcttgtgctgccgagaggtgagatgaaggtgaacttgctgccacagtctgggaatgctggtgcagcagctagccagcagctgatgggcaggttgccaaagcagcatcctcagatgtaaaaatggcaggaacatgagacaaatggtgtttgctgcttatgtatatgaaacatttttggtgcttttgttaggagaatggagtgttattgtagctcaatttactttcgggggaaaaaaaagcagatagttcaggc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001068683.1 RefSeq:Os08g0499300]|&lt;br /&gt;
}}&lt;br /&gt;
[[Category:Genes]]&lt;br /&gt;
[[Category:Japonica mRNA]]&lt;br /&gt;
[[Category:Oryza Sativa Japonica Group]]&lt;br /&gt;
[[Category:Japonica Genes]]&lt;br /&gt;
[[Category:Japonica Chromosome 8]]&lt;br /&gt;
[[Category:Chromosome 8]]&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.7.png&amp;diff=168048</id>
		<title>File:Fig.7.png</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig.7.png&amp;diff=168048"/>
				<updated>2014-05-10T13:01:19Z</updated>
		
		<summary type="html">&lt;p&gt;Zhong6937991: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Zhong6937991</name></author>	</entry>

	</feed>