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| − | Please input one-sentence summary here.
| + | The rice '''''Os12g0281300''''' was reported as '''''Pi-ta''''' in 2000 <ref name="ref1" /> by researchers from New Zealand, USA and Netherlands. |
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| | ==Annotated Information== | | ==Annotated Information== |
| | + | ===Gene Symbol=== |
| | + | *'''''Os12g0281300''''' '''<=>''' '''''OsPi-ta,Pi-ta,Pita''''' |
| | ===Function=== | | ===Function=== |
| − | | + | * The rice blast resistance ( R ) gene Pi-ta mediates gene-for-gene resistance against strains of the fungus Magnaporthe grisea that express avirulent alleles of AVR-Pita . |
| − | The rice blast resistance gene, Pi-ta, originally introgressed into japonica from indica rice is important in breeding for rice blast resistance worldwide. In the southern USA, the rice cultivar Katy contains Pi-ta and is resistant to the predominant blast M. grisea races IB-49 and IC-17 and has been used as the blast resistant breeding parent. Three pairs of DNA primers specific to the dominant indica Pi-ta gene were designed to amplify the Pi-ta DNA fragments by polymerase chain reaction (PCR). | + | * Pi-ta encodes a predicted 928–amino acid cytoplasmic receptor with a centrally localized nucleotide binding site. |
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| − | [[File:Figure 4. Blast symptoms of rice.png]]
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| − | Rice expressing the Pi-ta gene is resistant to strains of the rice blast fungus, Magnaporthe grisea, expressing AVR-Pita in a gene-for-gene relationship. Pi-ta encodes a putative cytoplasmic receptor with a centrally localized nucleotide-binding site and leucine-rich domain (LRD) at the C-terminus. AVR-Pita is predicted to encode a metalloprotease with an N-terminal secretory signal and pro-protein sequences. AVR-Pita176 lacks the secretory and pro-protein sequences.
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| − | [[File:Figure 3. Structure diagram of rice accessions carrying Pi-ta.png]]
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| − | In addition, the resistant Pi-ta allele (Pi-ta) found in the majority of US weedy rice belongs to the weedy group strawhull awnless (SH), suggesting a single source of origin for Pi-ta. Weeds with Pi-ta were resistant to two M. oryzae races, IC17 and IB49, except for three accessions, suggesting that component(s) required for the Pi-ta mediated resistance may be missing in these accessions.
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| | ===Expression=== | | ===Expression=== |
| − | | + | * Pi-ta shows low constitutive expression in both resistant and susceptible rice. |
| − | AVR-Pita176 protein is shown to bind specifically to the LRD of the Pi-ta protein, both in the yeast two-hybrid system and in an in vitro binding assay. Single amino acid substitutions in the Pi-ta LRD or in the AVR-Pita176 protease motif that result in loss of resistance in the plant also disrupt the physical interaction, both in yeast and in vitro.
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| − | [[File:Figure 2. Phylogenetic tree showing groups of US weedy rice among rice.png]]
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| − | The Pi-ta containing rice lines, as determined by PCR analysis, were resistant to both IB-49 and IC-17 in standard pathogenicity assays.
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| − | ===Evolution===
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| − | You can also add sub-section(s) at will.
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| − | Rice expressing the Pi-ta gene is resistant to strains of the rice blast fungus, Magnaporthe grisea, expressing AVR-Pita in a gene-for-gene relationship. Pi-ta encodes a putative cytoplasmic receptor with a centrally localized nucleotide-binding site and leucine-rich domain (LRD) at the C-terminus. AVR-Pita is predicted to encode a metalloprotease with an N-terminal secretory signal and pro-protein sequences. AVR-Pita176 lacks the secretory and pro-protein sequences.
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| − | [[File:Figure 5. Extended haplotype homozygosity (EHH) at and around Pi-ta.png]]
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| − | The pattern of genomic diversity and population differentiation at/around the Pi-ta gene in all US weedy rice revealed that the Pi-ta locus in weedy rice was genetically more similar to that in Asian cultivated rice (indica) rather than US cultivars and O. rufipogon, respectively. US weedy accessions can be divided into two major subgroups, SH and BHA. Our sequence and marker data demonstrated that SH is similar to indica and BHA is similar with aus. These findings suggest that Pi-ta in weedy rice could be derived from Asian rice distinct from those used to introgress Pi-ta into US germplasm. In plants, some resistance genes show gene presence/absence polymorphisms (P/A). These P/A polymorphisms can be selectively maintained for long evolutionary periods with flanking regions bearing the molecular signatures of balancing selection
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| | | | |
| | ==Labs working on this gene== | | ==Labs working on this gene== |
| − | 1.Dale Bumpers National Rice Research Center, Agricultural Research Service, United States Department of Agriculture, Stuttgart, Arkansas, United States of America.
| + | * AgResearch Grasslands, Private Bag 11008,Palmerston North, New Zealand. |
| − | 2.Institute of Plant Biology, National Taiwan University, Taipei 106, Taiwan.
| + | * USDA-ARS, Dale Bumpers National Rice Research Center, Stuttgart, AR 72160 |
| − | 3.Department of Botany, National Museum of Natural Science, Taichung 404, Taiwan.
| + | * Plant Research International, Wageningen UR, Genomics Department, Droevendaalsesteeg 1, 6700 AA Wageningen, The Netherlands. |
| − | 4.Department of Life Science, National Taiwan Normal University, Taipei 116, Taiwan,
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| − | 5.Department of Life Science, Pingtung University of Science and Technology, Pingtung 912, Taiwan.
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| − | 6.Faculty of Agriculture, Hokkaido University, 060, Sapporo, Japan.
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| | ==References== | | ==References== |
| − | 1. Seonghee Lee;Yulin Jia;Melissa Jia;David R. Gealy;Kenneth M. Olsen;Ana L. Caicedo
| + | <references> |
| − | Molecular Evolution of the Rice Blast Resistance Gene Pi-ta in Invasive Weedy Rice in the USA
| + | * <ref name="ref1"> |
| − | PLoS ONE, 2011, 6(10): e26260
| + | Bryan GT, Wu KS, Farrall L, Jia Y, Hershey HP, McAdams SA, Faulk KN, Donaldson |
| − | 2. X. Wang;R. Fjellstrom;Y. Jia;W. G. Yan;M. H. Jia;B. E. Scheffler;D. Wu;Q. Shu;A. McClung
| + | GK, Tarchini R, Valent B. tA single amino acid difference distinguishes resistant |
| − | Characterization of Pi-ta blast resistance gene in an international rice core collection
| + | and susceptible alleles of the rice blast resistance gene Pi-ta. Plant Cell. 2000 |
| − | Plant Breeding, 2010, 129(5): 491-501
| + | Nov;12(11):2033-46. PubMed PMID: 11090207; PubMed Central PMCID: PMC150156. |
| − | 3. Yulin Jia;Rodger Martin
| + | </references> |
| − | Identification of a New Locus, Ptr(t), Required for Rice Blast Resistance Gene Pi-ta–Mediated Resistance
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| − | Molecular Plant-Microbe Interactions, 2008, 21(4): 396-403
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| − | 4. Chun-Lin Huang;Shih-Ying Hwang;Yu-Chung Chiang;Tsan-Piao Lin
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| − | Molecular Evolution of the Pi-ta Gene Resistant to Rice Blast in Wild Rice (Oryza rufipogon)
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| − | Genetics, 2008, 179(3): 1527-1538
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| − | 5. 王忠华;贾育林;吴殿星;夏英武
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| − | 水稻抗稻瘟病基因Pi-ta的分子标记辅助选择
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| − | 作物学报, 2004, 30(12): 1259-1265
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| − | 6. Yulin Jia;Zhonghua Wang;Pratibha Singh
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| − | Development of dominant rice blast Pi-ta resistance gene markers
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| − | Crop Science, 2002, 42(6): 2145-2149
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| − | 7. Yulin Jia;Sean A. McAdams;Gregory T. Bryan;Howard P. Hershey;Barbara Valent
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| − | Direct interaction of resistance gene and avirulence gene products confers rice blast resistance
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| − | The EMBO Journal, 2000, 19(15): 4004-4014
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| − | 8. Gregory T. Bryan;Kun-Sheng Wu;Leonard Farrall;Yulin Jia;Howard P. Hershey;Sean A. McAdams;Kristina N. Faulk;Gail K. Donaldson;Renato Tarchini;Barbara Valent
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| − | A Single Amino Acid Difference Distinguishes Resistant and Susceptible Alleles of the Rice Blast Resistance Gene Pi-ta
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| − | The Plant Cell, 2000, 12(11): 2033-2046
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| − | 9. Hittalmani-S;Parco-A;Mew-T-V;Zeigler-R-S;Huang-N
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| − | Fine mapping and DNA marker-assisted pyramiding of the three major genes for blast resistance in rice
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| − | Theoretical and Applied Genetics, 2000, 100(7): 1121-1128
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| − | 10. Inukai T;Zeigler R S;Sarkarung S;Bronson M;Dung L V;Kinoshita T;Nelson R J
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| − | Development of pre-isogenic lines for rice blast-resistance by marker-aided selection from a recombinant inbred population
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| − | Theoretical and Applied Genetics, 1996, 93(4): 560-567
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| | ==Structured Information== | | ==Structured Information== |
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| − | {{JaponicaGene|
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| − | GeneName = Os12g0281300|
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| − | Description = Similar to Pi-ta protein|
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| − | Version = NM_001073106.1 GI:115488173 GeneID:4351983|
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| − | Length = 5556 bp|
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| − | Definition = Oryza sativa Japonica Group Os12g0281300, complete gene.|
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| − | Source = Oryza sativa Japonica Group
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| − | ORGANISM Oryza sativa Japonica Group
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| − | Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
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| − | Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
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| − | clade; Ehrhartoideae; Oryzeae; Oryza.
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| − | |1. Seonghee Lee;Yulin Jia;Melissa Jia;David R. Gealy;Kenneth M. Olsen;Ana L. Caicedo
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| − | Molecular Evolution of the Rice Blast Resistance Gene Pi-ta in Invasive Weedy Rice in the USA
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| − | PLoS ONE, 2011, 6(10): e26260
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| − | Chromosome = [[:category:Japonica Chromosome 12|Chromosome 12]]|
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| − | AP = Chromosome 12:10605422..10610977|
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| − | CDS = 10605623..10606017,10606490..10606533,10606706..10608424,10609890..10610833|
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| − | GCID = <gbrowseImage1>
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| − | name=NC_008405:10605422..10610977
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| − | source=RiceChromosome12
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| − | preset=GeneLocation
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| − | </gbrowseImage1>|
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| − | GSID = <gbrowseImage2>
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| − | name=NC_008405:10605422..10610977
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| − | source=RiceChromosome12
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| − | preset=GeneLocation
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| − | </gbrowseImage2>|
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| − | CDNA = <cdnaseq>atggcgccggcggtcagtgcatcgcagggtgtcatcatgcggtccctgacgagcaagctcgactcgctgctgctgcagccgccggagccgccgccgcctgcgcaaccgtcgtcgctgcggaagggggagaggaagaagatcctcctcctcagaggcgatctccgacacctgctagatgactactacctcctcgtggagccgccgtcagacaccgcgccaccgccagactcgacggcggcgtgctgggctaaggaggttcgcgagctctcctacgacgtcgacgacttcctcgacgagctaacgacccagctcctccaccaccgcggcggcggcgatggcagtagcactgctggtgccaagaagatgatcagcagcatgatcgcccggcttcgaggggagcttaaccggcggcggtggatcgccgacgaggtcaccctgttcagcgcccgcgtgaaggaggccattcgccgccaggagagctaccatcttggcaggcgcacctcgagctcgaggccgagagaagaagtcgacgacgacgatcgcgaggactccgccggcaacgaacgccgccggtttctgtcgctgacgttcgggatggacgacgctgctgtgcacggccagctcgttggtagggatatttcgatgcaaaagctcgtccggtggctggccgacggcgagccgaagctcaaggtggcttccattgttggatccggaggtgttggcaagacgacgctggccacagaattctatcgtctgcatggccggcggttggatgcgccgttcgactgccgggctttcgtgcggacgccccggaagcctgacatgacgaagatcctcaccgacatgctgtcacagctgcggccacaacatcagcatcagtcttcggatgtttgggaggttgatcgactccttgaaactatccggacgcatttgcaagataaaaggtacttcatcataattgaagatttatgggcttcatcaatgtgggatattgttagccgtggtttgcctgataataatagttgcagtagaatactaataacaacagaaattgaacctgtagctttggcatgctgtggatataactcagagcacattattaagattgatccactgggtgatgatgtctcaagtcaattgtttttcagtggagttgttggccaaggaaatgaatttcctggacatcttactgaagtttctcatgacatgataaaaaaatgtggtggcttgccactagcaataactataacagccagacattttaaaagccagctgttagatggaatgcagcaatggaatcacatacaaaaatcattgactacttccaatttgaagaaaaatcctactttgcaggggatgaggcaagtactcaaccttatttacaataatcttcctcattgtttgaaagcatgtctgttataccttagcatctacaaagaggactacataattaggaaggccaacttggtgaggcaatggatggctgaaggtttcatcaattccatagaaaataaagtcatggaagaagttgcagggaactattttgatgaacttgttggtaggggcctggtccaaccagtagatgttaactgcaaaaatgaggtattgtcatgtgtagtgcaccacatggtattaaatttcatcaggtgtaagtcaatagaggagaatttcagcattacattggatcattctcagacgacagtaagacatgctgacaaggttcgccgactctcgcttcacttcagcaatgcacatgatacaacaccactagcaggtttgagactctcacaagttcgatcgatggcatttttcggacaagtcaagtgtatgccttccattgcagattataggcttcttcgagttctgattctttgtttttgggctgatcaagagaaaacaagctatgacctcacaagcatttctgaactgttacaactgagatatctgaagataacaggtaatatcacagttaaacttccagagaagatccaaggactacaacacttgcagacactggaagcagatgcaagagcaactgctgtcctattggatattgttcatacacagtgtttgttgcaccttcgtcttgtactacttgatctgctccctcactgtcacaggtacatcttcaccagcatccccaaatggactggaaagctcaacaatctccgcattttaaacattgcagtcatgcaaatttcccaggatgaccttgacactctcaaaggactgggatctctcactgctctttcgctgcttgttcgaacagcgcctgcgcaaagaatcgtcgctgcgaatgaggggttcgggtctctcaagtacttcatgtttgtctgtacagcaccatgcatgacttttgtggaaggagcaatgccgagtgtgcaaagattaaatctaaggttcaatgccaacgagttcaagcagtatgactctaaggagacagggttggaacacttggtcgcccttgcagagatctctgcaagaattgggggcactgatgatgatgaatcaaacaaaactgaagtggagtctgccttgaggactgcaattcgcaagcatccgacgccgagcactcttatggttgatatacaatgggtggattggatctttggtgctgaagggagagacttggatgaagatttggcacaacaagatgatcacgggttttgtatgctaccggaatcctcttcacgtcttcagagtagagagataagtatcgaagaagacatgcccaccggtgcggaagggacggtgattgtgccccacacaatggagcagttcgccctccacatgagccaagccaagcaatcccacaagctcgtagtcatccagttcactacttcccggtgccctgcttcacgctacatcgcgccagctttcaccgagtatgcgaaggagttcgctggtgcggttttcattaaggtcaatgtcgacagcgatgagctggagagtgttacggactggtatgacatcgaagggatagtgccaacatttttcttcgtcaaggatggggagaagattgacaagattcctggtgctaacaaggagttgctccgagccaaaattcgaaggcacacagcttctccttacttcctccgttga</cdnaseq>|
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| − | AA = <aaseq>MAPAVSASQGVIMRSLTSKLDSLLLQPPEPPPPAQPSSLRKGER KKILLLRGDLRHLLDDYYLLVEPPSDTAPPPDSTAACWAKEVRELSYDVDDFLDELTT QLLHHRGGGDGSSTAGAKKMISSMIARLRGELNRRRWIADEVTLFSARVKEAIRRQES YHLGRRTSSSRPREEVDDDDREDSAGNERRRFLSLTFGMDDAAVHGQLVGRDISMQKL VRWLADGEPKLKVASIVGSGGVGKTTLATEFYRLHGRRLDAPFDCRAFVRTPRKPDMT KILTDMLSQLRPQHQHQSSDVWEVDRLLETIRTHLQDKRYFIIIEDLWASSMWDIVSR GLPDNNSCSRILITTEIEPVALACCGYNSEHIIKIDPLGDDVSSQLFFSGVVGQGNEF PGHLTEVSHDMIKKCGGLPLAITITARHFKSQLLDGMQQWNHIQKSLTTSNLKKNPTL QGMRQVLNLIYNNLPHCLKACLLYLSIYKEDYIIRKANLVRQWMAEGFINSIENKVME EVAGNYFDELVGRGLVQPVDVNCKNEVLSCVVHHMVLNFIRCKSIEENFSITLDHSQT TVRHADKVRRLSLHFSNAHDTTPLAGLRLSQVRSMAFFGQVKCMPSIADYRLLRVLIL CFWADQEKTSYDLTSISELLQLRYLKITGNITVKLPEKIQGLQHLQTLEADARATAVL LDIVHTQCLLHLRLVLLDLLPHCHRYIFTSIPKWTGKLNNLRILNIAVMQISQDDLDT LKGLGSLTALSLLVRTAPAQRIVAANEGFGSLKYFMFVCTAPCMTFVEGAMPSVQRLN LRFNANEFKQYDSKETGLEHLVALAEISARIGGTDDDESNKTEVESALRTAIRKHPTP STLMVDIQWVDWIFGAEGRDLDEDLAQQDDHGFCMLPESSSRLQSREISIEEDMPTGA EGTVIVPHTMEQFALHMSQAKQSHKLVVIQFTTSRCPASRYIAPAFTEYAKEFAGAVF IKVNVDSDELESVTDWYDIEGIVPTFFFVKDGEKIDKIPGANKELLRAKIRRHTASPY FLR</aaseq>|
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| − | DNA = <dnaseqindica>4961..5355#4445..4488#2554..4272#145..1088#agataggattaagtttcaagagttaatttcttgtactcttgggcgatccatgctgtcaaatcagcaactaacgaggcataatctcgatcactagctctgatctgatcttcagctagcgccggcgagctgcagaggtctccatccatggcgccggcggtcagtgcatcgcagggtgtcatcatgcggtccctgacgagcaagctcgactcgctgctgctgcagccgccggagccgccgccgcctgcgcaaccgtcgtcgctgcggaagggggagaggaagaagatcctcctcctcagaggcgatctccgacacctgctagatgactactacctcctcgtggagccgccgtcagacaccgcgccaccgccagactcgacggcggcgtgctgggctaaggaggttcgcgagctctcctacgacgtcgacgacttcctcgacgagctaacgacccagctcctccaccaccgcggcggcggcgatggcagtagcactgctggtgccaagaagatgatcagcagcatgatcgcccggcttcgaggggagcttaaccggcggcggtggatcgccgacgaggtcaccctgttcagcgcccgcgtgaaggaggccattcgccgccaggagagctaccatcttggcaggcgcacctcgagctcgaggccgagagaagaagtcgacgacgacgatcgcgaggactccgccggcaacgaacgccgccggtttctgtcgctgacgttcgggatggacgacgctgctgtgcacggccagctcgttggtagggatatttcgatgcaaaagctcgtccggtggctggccgacggcgagccgaagctcaaggtggcttccattgttggatccggaggtgttggcaagacgacgctggccacagaattctatcgtctgcatggccggcggttggatgcgccgttcgactgccgggctttcgtgcggacgccccggaagcctgacatgacgaagatcctcaccgacatgctgtcacagctgcggccacaacatcagcatcagtcttcggatgtttgggaggttgatcgactccttgaaactatccggacgcatttgcaagataaaaggtaattcatgtctacatctatctctagtatttttttcatgaatttacaaactattttctcaaatttccccttttttatccttcatatagtaattaagttagtaactatacatatgaatttaatttactcgacaatgccaataatattttaaattacttttatagtgccctctattagtagatacgattcgatcgagccatgaattatactggtaatctaaacaattattatacccacctcattctactaacagcaattgagttgttaatataaatagatatggtctattgcatgaaaaaataaaggtaaagtgtttacattatttctactactagtagaagaactacaaagttgtttgtatttttaattattaaatgtaaatgaaagtatatgtttcatacccttgttattttttttaggcgactaaactactagtacattatttctactactagtagaacaactacaaagttgtttgtatttttaattactaaatgtaaatgaaagtacatgcttcatacccttgttataattttttagactaaactaccacaatggcatgttaacttatagcagtaagttgtaatttattttcttttcattttctcagttgttacaagaacttttttttacttaataaaaaatagtcgtaagggcctcccttgttcggtcaaaaaagaattagactaaactcaatcgtatttgtacataaacaaaatttaaaatataactaaaacgaaacagtgataaaaatggtgcaatttaactgctgcctcttgttttaatgtctgacaatgttgattttgtatatatgtttggccatttattttattcaaattttttacaaatatgaaaaatataatatatgcttaaattacttttaatgataaaataaatttaaaaaaatgataattatatttttaataagatggatgatctaacatatatatgtccaaaagtttgacatcaaacattaaaaacaagagagagtatttgcttaggagtacgtgtctttttccatgtctaagaacaggtacaatagcaggttataagctagctataaacatattttaaagagatataggaagagagagaagagcagcagcctacagatctgtagccagctgcagcacggactctaagacgtaatgtgtgtatgacaggtaggaccaagtattaatagtatagtaagcaactattgtatgaattggctatttggctctagatgatttggagctagtagtcggctatactattaaacttgctcttagatatgtggttaaatttaatttctgaaatttacaagatatagaacatgtcttcaccatgtttgcaaagttgataaaatgaaattgcactcaactttttaaattcagcatgctatcccacgtatagctttttaaatatgatttattttttcgtacattagaagtttaatgtttacgaagtactaaatgttctgcaggtacttcatcataattgaagatttatgggcttcatcaatgtgggatattgttagccgtggtttgcctgataataatagttgcagtagaatactaataacaacagaaattgaacctgtagctttggcatgctgtggatataactcagagcacattattaagattgatccactgggtgatgatgtctcaagtcaattgtttttcagtggagttgttggccaaggaaatgaatttcctggacatcttactgaagtttctcatgacatgataaaaaaatgtggtggcttgccactagcaataactataacagccagacattttaaaagccagctgttagatggaatgcagcaatggaatcacatacaaaaatcattgactacttccaatttgaagaaaaatcctactttgcaggggatgaggcaagtactcaaccttatttacaataatcttcctcattgtttgaaagcatgtctgttataccttagcatctacaaagaggactacataattaggaaggccaacttggtgaggcaatggatggctgaaggtttcatcaattccatagaaaataaagtcatggaagaagttgcagggaactattttgatgaacttgttggtaggggcctggtccaaccagtagatgttaactgcaaaaatgaggtattgtcatgtgtagtgcaccacatggtattaaatttcatcaggtgtaagtcaatagaggagaatttcagcattacattggatcattctcagacgacagtaagacatgctgacaaggttcgccgactctcgcttcacttcagcaatgcacatgatacaacaccactagcaggtttgagactctcacaagttcgatcgatggcatttttcggacaagtcaagtgtatgccttccattgcagattataggcttcttcgagttctgattctttgtttttgggctgatcaagagaaaacaagctatgacctcacaagcatttctgaactgttacaactgagatatctgaagataacaggtaatatcacagttaaacttccagagaagatccaaggactacaacacttgcagacactggaagcagatgcaagagcaactgctgtcctattggatattgttcatacacagtgtttgttgcaccttcgtcttgtactacttgatctgctccctcactgtcacaggtacatcttcaccagcatccccaaatggactggaaagctcaacaatctccgcattttaaacattgcagtcatgcaaatttcccaggatgaccttgacactctcaaaggactgggatctctcactgctctttcgctgcttgttcgaacagcgcctgcgcaaagaatcgtcgctgcgaatgaggggttcgggtctctcaagtacttcatgtttgtctgtacagcaccatgcatgacttttgtggaaggagcaatgccgagtgtgcaaagattaaatctaaggttcaatgccaacgagttcaagcagtatgactctaaggagacagggttggaacacttggtcgcccttgcagagatctctgcaagaattgggggcactgatgatgatgaatcaaacaaaactgaagtggagtctgccttgaggactgcaattcgcaagcatccgacgccgagcactcttatggttgatatacaatgggtggattggatctttggtgctgaagggagagacttggatgaagatttggcacaacaagatgatcacgggtatggatttttcattctattcccaggttacaacttacaaggattattgagcttctttctttctctgccgtggcttctatctttaccttctatgcatcttcaacctgacttgatgattgtttgaaaccaattttaatggaagttaaatgttattgttgtgaccctgaatcaggttttgtatgctaccggaatcctcttcacgtcttcagagtagaggtaattttgtttcttgtcattttacagttacagttcatctacttaaggaattaatgggaggtcctatattttctcgggtacctagaaggtgtggttcctagtcttacctccttaagaaccgtagaatgttggccctaacacttggatcaaagaacgaaaggtgtatgcactatagtatcctttatatattgcacaagtcaagacatttgttaaaacacacccagtgctagtaatttgtttactgagatatgaattatcgccaaatacccatactgagcctattagtaaaatatttacgaggtgtttgaggacagcataactttcagtaaagaatttactacgtgaggtgtgtgttttaggtattgcgcatcttgggtgcattttagcgcaaacgtgtataatatatatcccatggtactaactcatgtcttaaccataattgcacaccaacacaaaacatacactactacagagataagtatcgaagaagacatgcccaccggtgcggaagggacggtgattgtgccccacacaatggagcagttcgccctccacatgagccaagccaagcaatcccacaagctcgtagtcatccagttcactacttcccggtgccctgcttcacgctacatcgcgccagctttcaccgagtatgcgaaggagttcgctggtgcggttttcattaaggtcaatgtcgacagcgatgagctggagagtgttacggactggtatgacatcgaagggatagtgccaacatttttcttcgtcaaggatggggagaagattgacaagattcctggtgctaacaaggagttgctccgagccaaaattcgaaggcacacagcttctccttacttcctccgttgataatgacttcttttatcgtctttgtctagtatatatatggcacttatatagttaactaggaagggcaccttgtttaatgtagctttcatttttattatgaatgttaaggatgatattatattgttgaagtatttttttactccttgtaaacatgtattggttaataacgaagtagtttggacattagttatgattttcttc</dnaseqindica>|
| |
| − | Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001073106.1 RefSeq:Os12g0281300]|
| |
| − | }}
| |
| | [[Category:Genes]] | | [[Category:Genes]] |
| | [[Category:Japonica mRNA]] | | [[Category:Japonica mRNA]] |