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	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os07g0182900&amp;diff=179241</id>
		<title>Os07g0182900</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os07g0182900&amp;diff=179241"/>
				<updated>2014-06-06T13:43:46Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
DNA methylation is a heritable epigenetic mark that regulates expression of genes involved in developmental processes DNA. In mammals, DNA methylation predominantly occurs in CG dinucleotides and is maintained by DNA methyltransferase1, While in plants, CG methylation&lt;br /&gt;
is maintained by methyltransferase1(MET1).DNA methytransferase (OsMET1) genes from rice (Oryza sativa L) have two types, OsMET1a and OsMET1b, on chromosomes 3 and 7, respectively, each encoding a cytosine-5 DNA methyltransferase (MTase), which are mainly responsible for maintaining CG dinucleotide methylation after DNA replication.OsMET1 is a plant homolog of mammalian DNA methyltransferase1(DNMT1), and MET1b plays a major role in the maintenance DNA methylation compared to MET1a, which is indispensable for the normal development of embryos in rice.&lt;br /&gt;
&lt;br /&gt;
===Sequence comparison between OsMET1a and OsMET1b===&lt;br /&gt;
*OsMET1a has an open reading frame of 4,566 nucleotides with 12 exons and 11 introns while OsMET1b has an open reading frame of 4,491; nucleotides with 11 exons and 10 introns. Although OsMET1a and OsMET1b have high sequence similarity overall, they share only 24%; dentity in exon 1, and intron 3 of OsMET1a is absent from OsMET1b.&lt;br /&gt;
*A lysine–glycine repeat that is highly conserved in DNA MTases is present two-thirds of the way through the protein, separating the catalytic and regulatory domains in both OsMET1a and OsMET1b.&lt;br /&gt;
*The amino acid sequence downstream of the lysine–glycine repeat motif in OsMET1a showed a higher conservation (86.5%) with that of OsMET1b than did that (67.7%) for the N terminal domain (residues 1–1059). The inferred amino acid sequences of OsMET1a and OsMET1b contain several functional regions.&lt;br /&gt;
[[File:112233.JPEG]]&lt;br /&gt;
&lt;br /&gt;
Figure 1:Proportionate diagram of OsMET1-1 showing conserved domains: S-stretch serine-rich region; E-rich region glutamic acid-rich region; BAH bromo adjacent homology domain (black boxes with white dots); IQ motif (calmodulin binding) isoleucine (I) and glutamine (Q) motif (hatched box); NLS putative nuclear localization signal (oval); KG linker the lysine-glycine repeat, KNKGKG (gray box); I to X the catalytic domain with eight highly conserved DNA MTase motifs (black bars).&lt;br /&gt;
&lt;br /&gt;
===Mutation assay===&lt;br /&gt;
* RNAi-mediated  knockdown  analysis of the rice MET1 genes showed that it resulted in reactivation of a silenced β-glucuronidase (GUS) transgene in rice callus.&lt;br /&gt;
* A Osmet1a null mutant has no obvious phenotypes, while Osmet1b null mutant exhibited abnormal seed phenotypes, such as early embryonic lethality, decreased levels of DNA methylation at repetitive CentO sequences and at the FIEI gene locus in the embryos.&lt;br /&gt;
[[File:Figure 1.Phenotyes of normal type seeds and OsMET1b null mutant type(A to C) seeds.png]]&lt;br /&gt;
&lt;br /&gt;
Figure 2.Phenotyes of normal type seeds and OsMET1b null mutant type(A to C) seeds&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
* Ribonuclease protection assays showed that MET1a and MET1b both express in highly replicating and dividing cells;&lt;br /&gt;
* MET1b is more abundantly expressed than MET1a in all of the tissues examined, like callus, root and inflorescence.&lt;br /&gt;
* OsMET1b does not express in differentiated tissue (10-day-old leaf), and no expression for either gene was found in mature leaves.&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
This phylogenetic relationships between eukaryotic and prokaryotic DNA methytransferase were derived using the AlignX program of the VectorNTI suite, suggesting that the rice DNA methytransferase are related to DNA methytransferase of Dnmt1/MET1 class in diverse organisms from several kingdom.&lt;br /&gt;
[[File:112233cwb.jpeg]]&lt;br /&gt;
&lt;br /&gt;
Figure 3. Phylogenetic relationships between eukaryotic and prokaryotic DNA methytransferase&lt;br /&gt;
Phylogenetic relationships between eukaryotic and prokaryotic MTases were derived using the AlignX program of the VectorNTI suite with the following GenBank accessions: maize MET1 (AF063403), rice MET1-1 (OsMET1-1, AF462029), rice MET1-2 (OsMET1-2, TPA BK001405), Arabidopsis MET1(AtMET1, AT5G49160) and MET2 (MET2-type C-5 DNA MTase, AT4G08990), pea MET1 (putative C-5 DNA MTase, AF034419), carrot MET1 (carrot C-5 DNA MTase, AF007807) and MET2 (MET2-type C-5 DNA MTase, AF007808), tobacco MET1 (NtMET1, AB030726), tomato (putative C-5 DNA MTase AJ002140), rat DNMT1 (AB012214), human DNMT1 (AF180682), Xenopus DNMT1(D78638), zebra fish DNMT1 (AF483203), chicken DNMT1 (2112268A), Neurospora DIM2 (AF348971), Ascobolus DNMTase (Z96933), rice MET2a (AC069324), maize MET2a (AF243043) and Haemophilus haemolyticus M.HhaI (XYH1H1)&lt;br /&gt;
&lt;br /&gt;
===Knowledge extension===&lt;br /&gt;
Apart from the main information listed above about function, expression and evolution about OsMET1 gene, there are also some advanced researches about this gene being conducted in the past few years. Takaki Yamauchi et al. reported in 2007 that the alternative splicing mechanisms of OsMET1a transcript and OsMET1b transcript differ, which is key to the regulation of active OsMET1 protein generation in different tissues. Daisuke Miki et al. reported in 2008 that de novo DNA methylation can be induced by siRNA targeted to endogenous transcribed sequences which is gene-specific and OsMET1-indepent in rice, which is also the first time to observe transcriptional gene silencing by siRNAs. Takaki Yamauchi et al. reported in 2009 that they successfully realized homologous recombination-promoted knock-in targeting to monitor gene expression by fusing a reporter gene named GUS codingβ-glucuronidase with its promoter in rice, in principle, this method can be applied to modify any endogenous gene which would promote basic and applied plant research.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
* Institute of Developmental and Molecular Biology, and Department of Biology, Texas A&amp;amp;M University, College Station, TX, USA&lt;br /&gt;
* National Institute for Basic Biology, Okazaki, Japan&lt;br /&gt;
* Graduate School of Science and Technology, Chiba University, Matsudo, Japan&lt;br /&gt;
* Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Japan&lt;br /&gt;
* Graduate School of Nutritional and Environmental Sciences, University of Shizuoka, Shizuoka, Japan&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 = Os07g0182900|&lt;br /&gt;
Description = Similar to Cytosine-5 DNA methyltransferase MET1 (Fragment)|&lt;br /&gt;
Version = NM_001065587.1 GI:115470906 GeneID:4342575|&lt;br /&gt;
Length = 2298 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os07g0182900, 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 7|Chromosome 7]]|&lt;br /&gt;
AP = Chromosome 7:4421779..4424076|&lt;br /&gt;
CDS = 4421780..4421864,4421955..4422066,4422154..4422301,4422417..4422614,4422710..4422988&amp;lt;br&amp;gt;,4423084..4423245,4423344..4423562,4423676..4423810|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008400:4421779..4424076&lt;br /&gt;
source=RiceChromosome07&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_008400:4421779..4424076&lt;br /&gt;
source=RiceChromosome07&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;acaaaggtgtccaaagagaaccgtcttgcaactcttgacatttttgctggctgtggaggtttatcagaaggactgcagcaagctggtgtatcgtttacaaagtgggcgattgaatatgaggaaccagctggtgaagcatttaccaaaaatcatccagaagctgcggtgtttgtggataactgcaatgtgattttgaaggcaattatggacaaatgtggagatgctgatgattgcatttcaacttctgaggctgctgaacaagcagctaaattttctcaggacaatattatgaaccttcctgtccctggtgaagtagaattcataaatggtggtcctccatgtcagggcttttctgggatgaacagatttaaccaaagcccatggagtaaagttcaatgtgagatgattttagcattcctgtcttttgctgaatatttccgccccagattctttcttttagaaaatgttaggaactttgtttcattcaacaaaggacagacatttcgactgacagttgcatcccttctggagatgggataccaggtccggtttggaattttagaggcagggacttttggtgttgctcagtccaggaaaagagcattcatttgggctgctgcacctggagagactctgcctgattggccagaaccaatgcatgtgtttgctagccctgagctgaaaataaatttgcctgatggtaaatactatgcagctgcaaaaagcactgctggtggtgctcctttccgtgcaataacagttagagatacaataggcgatttaccaaaggtggagaatggcgccagtaaactcctacttgagtacggtggcgaacccatctcctggttccagaagaagattagagggaacacgatcgcgctgaatgatcacatatctaaggagatgaatgaactgaacctcatcagatgccaacgcattccaaagcggcctggttgtgattggcatgacctaccagatgagaaggtgaaactatcatctggccaactggtggacctgatcccttggtgcctgcctaacacagctaaaaggcacaaccagtggaaagggctttatggtaggctggattgggagggcaatttccctacttctgtgacagacccccagccaatgggcaaggttggcatgtgcttccaccctgaccaggataggatcatcacagtccgtgaatgtgcgcgatctcagggctttcctgacaactaccagttcgcgggcaacatccagagcaagcacaggcagattggcaatgcggtgcctccacctcttgccttcgccctcgggaggaaactgaaggaagctgttgatgcaaagcgtcagtag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;TKVSKENRLATLDIFAGCGGLSEGLQQAGVSFTKWAIEYEEPAG                     EAFTKNHPEAAVFVDNCNVILKAIMDKCGDADDCISTSEAAEQAAKFSQDNIMNLPVP                     GEVEFINGGPPCQGFSGMNRFNQSPWSKVQCEMILAFLSFAEYFRPRFFLLENVRNFV                     SFNKGQTFRLTVASLLEMGYQVRFGILEAGTFGVAQSRKRAFIWAAAPGETLPDWPEP                     MHVFASPELKINLPDGKYYAAAKSTAGGAPFRAITVRDTIGDLPKVENGASKLLLEYG                     GEPISWFQKKIRGNTIALNDHISKEMNELNLIRCQRIPKRPGCDWHDLPDEKVKLSSG                     QLVDLIPWCLPNTAKRHNQWKGLYGRLDWEGNFPTSVTDPQPMGKVGMCFHPDQDRII                     TVRECARSQGFPDNYQFAGNIQSKHRQIGNAVPPPLAFALGRKLKEAVDAKRQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;2..86#177..288#376..523#639..836#932..1210#1306..1467#1566..1784#1898..2032#tacaaaggtgtccaaagagaaccgtcttgcaactcttgacatttttgctggctgtggaggtttatcagaaggactgcagcaagctggtatgcactttccttcaataatggtgtttagctttatcatcaacatgtcggccatcagactgatattttattaccatttaaattctgtaggtgtatcgtttacaaagtgggcgattgaatatgaggaaccagctggtgaagcatttaccaaaaatcatccagaagctgcggtgtttgtggataactgcaatgtgattttgaagtaggtgcaccgtgcacttccttgattttttctgtggttttctttttacctatatagctcaatagggactgttatatgattttgcagggcaattatggacaaatgtggagatgctgatgattgcatttcaacttctgaggctgctgaacaagcagctaaattttctcaggacaatattatgaaccttcctgtccctggtgaagtagaattcataaatggtggtcctccatgtcaggtatattattttgctatacttgatggaattttctttgcacctaggcaagcaaattgtttgcacttcaatacttgtgataaatgacttcaattttgtaatttttttctcaactcagggcttttctgggatgaacagatttaaccaaagcccatggagtaaagttcaatgtgagatgattttagcattcctgtcttttgctgaatatttccgccccagattctttcttttagaaaatgttaggaactttgtttcattcaacaaaggacagacatttcgactgacagttgcatcccttctggagatgggataccaggtaattattcttctggttatacatacttaaaatgcctatgtacagcatttgttttgaatcttataataaccagaagctgtttacttgttgcttaggtccggtttggaattttagaggcagggacttttggtgttgctcagtccaggaaaagagcattcatttgggctgctgcacctggagagactctgcctgattggccagaaccaatgcatgtgtttgctagccctgagctgaaaataaatttgcctgatggtaaatactatgcagctgcaaaaagcactgctggtggtgctcctttccgtgcaataacagttagagatacaataggcgatttaccaaaggtggagaatggcgccagtaaactcctacttgaggtaaaattgcttctcctatatggctatccgctccattttatcctgtttcttctcttgatttatatgctgaatgaatcccctcttttgtaatgcagtacggtggcgaacccatctcctggttccagaagaagattagagggaacacgatcgcgctgaatgatcacatatctaaggagatgaatgaactgaacctcatcagatgccaacgcattccaaagcggcctggttgtgattggcatgacctaccagatgagaaggtaaatgccatctaccttgcggttgcattcacttccttttgtgctcttccatacattccttgcatcagcggaatgttaaccattatgagcgtgtgcaggtgaaactatcatctggccaactggtggacctgatcccttggtgcctgcctaacacagctaaaaggcacaaccagtggaaagggctttatggtaggctggattgggagggcaatttccctacttctgtgacagacccccagccaatgggcaaggttggcatgtgcttccaccctgaccaggataggatcatcacagtccgtgaatgtgcgcgatctcaggtaagctgctattgctatccatccattcaacattctcttcctgtcttctaagatattgtgaatttggaggggagtcagtactgaccgtttaactaacctattcttgtctgcagggctttcctgacaactaccagttcgcgggcaacatccagagcaagcacaggcagattggcaatgcggtgcctccacctcttgccttcgccctcgggaggaaactgaaggaagctgttgatgcaaagcgtcagtaggtgctcagagtccttctccgatgatcgagggagatgattctcccctgaaaagaaacaaacaaccaaacatatgagtgtacttattttaattgtgcgctgcatttaactttgtgtgttgattaagattttagtcatatagatccttggtaaccttgtacattttagaggttgtgttgtgattgatacccttgattcaggggtatgatttagtggctgtattcagatatttaaacaaaataatactagttagtgatggttgaattgtt&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001065587.1 RefSeq:Os07g0182900]|&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 7]]&lt;br /&gt;
[[Category:Chromosome 7]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:112233cwb.jpeg&amp;diff=179239</id>
		<title>File:112233cwb.jpeg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:112233cwb.jpeg&amp;diff=179239"/>
				<updated>2014-06-06T13:41:50Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os07g0182900&amp;diff=179237</id>
		<title>Os07g0182900</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os07g0182900&amp;diff=179237"/>
				<updated>2014-06-06T13:41:14Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: &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;
DNA methylation is a heritable epigenetic mark that regulates expression of genes involved in developmental processes DNA. In mammals, DNA methylation predominantly occurs in CG dinucleotides and is maintained by DNA methyltransferase1, While in plants, CG methylation&lt;br /&gt;
is maintained by methyltransferase1(MET1).DNA methytransferase (OsMET1) genes from rice (Oryza sativa L) have two types, OsMET1a and OsMET1b, on chromosomes 3 and 7, respectively, each encoding a cytosine-5 DNA methyltransferase (MTase), which are mainly responsible for maintaining CG dinucleotide methylation after DNA replication.OsMET1 is a plant homolog of mammalian DNA methyltransferase1(DNMT1), and MET1b plays a major role in the maintenance DNA methylation compared to MET1a, which is indispensable for the normal development of embryos in rice.&lt;br /&gt;
&lt;br /&gt;
===Sequence comparison between OsMET1a and OsMET1b===&lt;br /&gt;
*OsMET1a has an open reading frame of 4,566 nucleotides with 12 exons and 11 introns while OsMET1b has an open reading frame of 4,491; nucleotides with 11 exons and 10 introns. Although OsMET1a and OsMET1b have high sequence similarity overall, they share only 24%; dentity in exon 1, and intron 3 of OsMET1a is absent from OsMET1b.&lt;br /&gt;
*A lysine–glycine repeat that is highly conserved in DNA MTases is present two-thirds of the way through the protein, separating the catalytic and regulatory domains in both OsMET1a and OsMET1b.&lt;br /&gt;
*The amino acid sequence downstream of the lysine–glycine repeat motif in OsMET1a showed a higher conservation (86.5%) with that of OsMET1b than did that (67.7%) for the N terminal domain (residues 1–1059). The inferred amino acid sequences of OsMET1a and OsMET1b contain several functional regions.&lt;br /&gt;
[[File:112233.JPEG]]&lt;br /&gt;
&lt;br /&gt;
Figure 1:Proportionate diagram of OsMET1-1 showing conserved domains: S-stretch serine-rich region; E-rich region glutamic acid-rich region; BAH bromo adjacent homology domain (black boxes with white dots); IQ motif (calmodulin binding) isoleucine (I) and glutamine (Q) motif (hatched box); NLS putative nuclear localization signal (oval); KG linker the lysine-glycine repeat, KNKGKG (gray box); I to X the catalytic domain with eight highly conserved DNA MTase motifs (black bars).&lt;br /&gt;
&lt;br /&gt;
===Mutation assay===&lt;br /&gt;
* RNAi-mediated  knockdown  analysis of the rice MET1 genes showed that it resulted in reactivation of a silenced β-glucuronidase (GUS) transgene in rice callus.&lt;br /&gt;
* A Osmet1a null mutant has no obvious phenotypes, while Osmet1b null mutant exhibited abnormal seed phenotypes, such as early embryonic lethality, decreased levels of DNA methylation at repetitive CentO sequences and at the FIEI gene locus in the embryos.&lt;br /&gt;
[[File:Figure 1.Phenotyes of normal type seeds and OsMET1b null mutant type(A to C) seeds.png]]&lt;br /&gt;
&lt;br /&gt;
Figure 2.Phenotyes of normal type seeds and OsMET1b null mutant type(A to C) seeds&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
* Ribonuclease protection assays showed that MET1a and MET1b both express in highly replicating and dividing cells;&lt;br /&gt;
* MET1b is more abundantly expressed than MET1a in all of the tissues examined, like callus, root and inflorescence.&lt;br /&gt;
* OsMET1b does not express in differentiated tissue (10-day-old leaf), and no expression for either gene was found in mature leaves.&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
This phylogenetic relationships between eukaryotic and prokaryotic DNA methytransferase were derived using the AlignX program of the VectorNTI suite, suggesting that the rice DNA methytransferase are related to DNA methytransferase of Dnmt1/MET1 class in diverse organisms from several kingdom.&lt;br /&gt;
[[File:112233cwb]]&lt;br /&gt;
&lt;br /&gt;
Figure 3. Phylogenetic relationships between eukaryotic and prokaryotic DNA methytransferase&lt;br /&gt;
Phylogenetic relationships between eukaryotic and prokaryotic MTases were derived using the AlignX program of the VectorNTI suite with the following GenBank accessions: maize MET1 (AF063403), rice MET1-1 (OsMET1-1, AF462029), rice MET1-2 (OsMET1-2, TPA BK001405), Arabidopsis MET1(AtMET1, AT5G49160) and MET2 (MET2-type C-5 DNA MTase, AT4G08990), pea MET1 (putative C-5 DNA MTase, AF034419), carrot MET1 (carrot C-5 DNA MTase, AF007807) and MET2 (MET2-type C-5 DNA MTase, AF007808), tobacco MET1 (NtMET1, AB030726), tomato (putative C-5 DNA MTase AJ002140), rat DNMT1 (AB012214), human DNMT1 (AF180682), Xenopus DNMT1(D78638), zebra fish DNMT1 (AF483203), chicken DNMT1 (2112268A), Neurospora DIM2 (AF348971), Ascobolus DNMTase (Z96933), rice MET2a (AC069324), maize MET2a (AF243043) and Haemophilus haemolyticus M.HhaI (XYH1H1)&lt;br /&gt;
&lt;br /&gt;
===Knowledge extension===&lt;br /&gt;
Apart from the main information listed above about function, expression and evolution about OsMET1 gene, there are also some advanced researches about this gene being conducted in the past few years. Takaki Yamauchi et al. reported in 2007 that the alternative splicing mechanisms of OsMET1a transcript and OsMET1b transcript differ, which is key to the regulation of active OsMET1 protein generation in different tissues. Daisuke Miki et al. reported in 2008 that de novo DNA methylation can be induced by siRNA targeted to endogenous transcribed sequences which is gene-specific and OsMET1-indepent in rice, which is also the first time to observe transcriptional gene silencing by siRNAs. Takaki Yamauchi et al. reported in 2009 that they successfully realized homologous recombination-promoted knock-in targeting to monitor gene expression by fusing a reporter gene named GUS codingβ-glucuronidase with its promoter in rice, in principle, this method can be applied to modify any endogenous gene which would promote basic and applied plant research.&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
* Institute of Developmental and Molecular Biology, and Department of Biology, Texas A&amp;amp;M University, College Station, TX, USA&lt;br /&gt;
* National Institute for Basic Biology, Okazaki, Japan&lt;br /&gt;
* Graduate School of Science and Technology, Chiba University, Matsudo, Japan&lt;br /&gt;
* Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Japan&lt;br /&gt;
* Graduate School of Nutritional and Environmental Sciences, University of Shizuoka, Shizuoka, Japan&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 = Os07g0182900|&lt;br /&gt;
Description = Similar to Cytosine-5 DNA methyltransferase MET1 (Fragment)|&lt;br /&gt;
Version = NM_001065587.1 GI:115470906 GeneID:4342575|&lt;br /&gt;
Length = 2298 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os07g0182900, 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 7|Chromosome 7]]|&lt;br /&gt;
AP = Chromosome 7:4421779..4424076|&lt;br /&gt;
CDS = 4421780..4421864,4421955..4422066,4422154..4422301,4422417..4422614,4422710..4422988&amp;lt;br&amp;gt;,4423084..4423245,4423344..4423562,4423676..4423810|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008400:4421779..4424076&lt;br /&gt;
source=RiceChromosome07&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_008400:4421779..4424076&lt;br /&gt;
source=RiceChromosome07&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;acaaaggtgtccaaagagaaccgtcttgcaactcttgacatttttgctggctgtggaggtttatcagaaggactgcagcaagctggtgtatcgtttacaaagtgggcgattgaatatgaggaaccagctggtgaagcatttaccaaaaatcatccagaagctgcggtgtttgtggataactgcaatgtgattttgaaggcaattatggacaaatgtggagatgctgatgattgcatttcaacttctgaggctgctgaacaagcagctaaattttctcaggacaatattatgaaccttcctgtccctggtgaagtagaattcataaatggtggtcctccatgtcagggcttttctgggatgaacagatttaaccaaagcccatggagtaaagttcaatgtgagatgattttagcattcctgtcttttgctgaatatttccgccccagattctttcttttagaaaatgttaggaactttgtttcattcaacaaaggacagacatttcgactgacagttgcatcccttctggagatgggataccaggtccggtttggaattttagaggcagggacttttggtgttgctcagtccaggaaaagagcattcatttgggctgctgcacctggagagactctgcctgattggccagaaccaatgcatgtgtttgctagccctgagctgaaaataaatttgcctgatggtaaatactatgcagctgcaaaaagcactgctggtggtgctcctttccgtgcaataacagttagagatacaataggcgatttaccaaaggtggagaatggcgccagtaaactcctacttgagtacggtggcgaacccatctcctggttccagaagaagattagagggaacacgatcgcgctgaatgatcacatatctaaggagatgaatgaactgaacctcatcagatgccaacgcattccaaagcggcctggttgtgattggcatgacctaccagatgagaaggtgaaactatcatctggccaactggtggacctgatcccttggtgcctgcctaacacagctaaaaggcacaaccagtggaaagggctttatggtaggctggattgggagggcaatttccctacttctgtgacagacccccagccaatgggcaaggttggcatgtgcttccaccctgaccaggataggatcatcacagtccgtgaatgtgcgcgatctcagggctttcctgacaactaccagttcgcgggcaacatccagagcaagcacaggcagattggcaatgcggtgcctccacctcttgccttcgccctcgggaggaaactgaaggaagctgttgatgcaaagcgtcagtag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;TKVSKENRLATLDIFAGCGGLSEGLQQAGVSFTKWAIEYEEPAG                     EAFTKNHPEAAVFVDNCNVILKAIMDKCGDADDCISTSEAAEQAAKFSQDNIMNLPVP                     GEVEFINGGPPCQGFSGMNRFNQSPWSKVQCEMILAFLSFAEYFRPRFFLLENVRNFV                     SFNKGQTFRLTVASLLEMGYQVRFGILEAGTFGVAQSRKRAFIWAAAPGETLPDWPEP                     MHVFASPELKINLPDGKYYAAAKSTAGGAPFRAITVRDTIGDLPKVENGASKLLLEYG                     GEPISWFQKKIRGNTIALNDHISKEMNELNLIRCQRIPKRPGCDWHDLPDEKVKLSSG                     QLVDLIPWCLPNTAKRHNQWKGLYGRLDWEGNFPTSVTDPQPMGKVGMCFHPDQDRII                     TVRECARSQGFPDNYQFAGNIQSKHRQIGNAVPPPLAFALGRKLKEAVDAKRQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;2..86#177..288#376..523#639..836#932..1210#1306..1467#1566..1784#1898..2032#tacaaaggtgtccaaagagaaccgtcttgcaactcttgacatttttgctggctgtggaggtttatcagaaggactgcagcaagctggtatgcactttccttcaataatggtgtttagctttatcatcaacatgtcggccatcagactgatattttattaccatttaaattctgtaggtgtatcgtttacaaagtgggcgattgaatatgaggaaccagctggtgaagcatttaccaaaaatcatccagaagctgcggtgtttgtggataactgcaatgtgattttgaagtaggtgcaccgtgcacttccttgattttttctgtggttttctttttacctatatagctcaatagggactgttatatgattttgcagggcaattatggacaaatgtggagatgctgatgattgcatttcaacttctgaggctgctgaacaagcagctaaattttctcaggacaatattatgaaccttcctgtccctggtgaagtagaattcataaatggtggtcctccatgtcaggtatattattttgctatacttgatggaattttctttgcacctaggcaagcaaattgtttgcacttcaatacttgtgataaatgacttcaattttgtaatttttttctcaactcagggcttttctgggatgaacagatttaaccaaagcccatggagtaaagttcaatgtgagatgattttagcattcctgtcttttgctgaatatttccgccccagattctttcttttagaaaatgttaggaactttgtttcattcaacaaaggacagacatttcgactgacagttgcatcccttctggagatgggataccaggtaattattcttctggttatacatacttaaaatgcctatgtacagcatttgttttgaatcttataataaccagaagctgtttacttgttgcttaggtccggtttggaattttagaggcagggacttttggtgttgctcagtccaggaaaagagcattcatttgggctgctgcacctggagagactctgcctgattggccagaaccaatgcatgtgtttgctagccctgagctgaaaataaatttgcctgatggtaaatactatgcagctgcaaaaagcactgctggtggtgctcctttccgtgcaataacagttagagatacaataggcgatttaccaaaggtggagaatggcgccagtaaactcctacttgaggtaaaattgcttctcctatatggctatccgctccattttatcctgtttcttctcttgatttatatgctgaatgaatcccctcttttgtaatgcagtacggtggcgaacccatctcctggttccagaagaagattagagggaacacgatcgcgctgaatgatcacatatctaaggagatgaatgaactgaacctcatcagatgccaacgcattccaaagcggcctggttgtgattggcatgacctaccagatgagaaggtaaatgccatctaccttgcggttgcattcacttccttttgtgctcttccatacattccttgcatcagcggaatgttaaccattatgagcgtgtgcaggtgaaactatcatctggccaactggtggacctgatcccttggtgcctgcctaacacagctaaaaggcacaaccagtggaaagggctttatggtaggctggattgggagggcaatttccctacttctgtgacagacccccagccaatgggcaaggttggcatgtgcttccaccctgaccaggataggatcatcacagtccgtgaatgtgcgcgatctcaggtaagctgctattgctatccatccattcaacattctcttcctgtcttctaagatattgtgaatttggaggggagtcagtactgaccgtttaactaacctattcttgtctgcagggctttcctgacaactaccagttcgcgggcaacatccagagcaagcacaggcagattggcaatgcggtgcctccacctcttgccttcgccctcgggaggaaactgaaggaagctgttgatgcaaagcgtcagtaggtgctcagagtccttctccgatgatcgagggagatgattctcccctgaaaagaaacaaacaaccaaacatatgagtgtacttattttaattgtgcgctgcatttaactttgtgtgttgattaagattttagtcatatagatccttggtaaccttgtacattttagaggttgtgttgtgattgatacccttgattcaggggtatgatttagtggctgtattcagatatttaaacaaaataatactagttagtgatggttgaattgtt&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001065587.1 RefSeq:Os07g0182900]|&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 7]]&lt;br /&gt;
[[Category:Chromosome 7]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os07g0182900&amp;diff=177583</id>
		<title>Os07g0182900</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os07g0182900&amp;diff=177583"/>
				<updated>2014-06-04T14:34:35Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* Labs working on this gene */&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;
DNA methylation is a heritable epigenetic mark that regulates expression of genes involved in developmental processes DNA. In mammals, DNA methylation predominantly occurs in CG dinucleotides and is maintained by DNA methyltransferase1, While in plants, CG methylation&lt;br /&gt;
is maintained by methyltransferase1(MET1).DNA methytransferase (OsMET1) genes from rice (Oryza sativa L) have two types, OsMET1a and OsMET1b, on chromosomes 3 and 7, respectively, each encoding a cytosine-5 DNA methyltransferase (MTase), which are mainly responsible for maintaining CG dinucleotide methylation after DNA replication.OsMET1 is a plant homolog of mammalian DNA methyltransferase1(DNMT1), and MET1b plays a major role in the maintenance DNA methylation compared to MET1a, which is indispensable for the normal development of embryos in rice.&lt;br /&gt;
&lt;br /&gt;
===Sequence comparison between OsMET1a and OsMET1b===&lt;br /&gt;
*OsMET1a has an open reading frame of 4,566 nucleotides with 12 exons and 11 introns while OsMET1b has an open reading frame of 4,491; nucleotides with 11 exons and 10 introns. Although OsMET1a and OsMET1b have high sequence similarity overall, they share only 24%; dentity in exon 1, and intron 3 of OsMET1a is absent from OsMET1b.&lt;br /&gt;
*A lysine–glycine repeat that is highly conserved in DNA MTases is present two-thirds of the way through the protein, separating the catalytic and regulatory domains in both OsMET1a and OsMET1b.&lt;br /&gt;
*The amino acid sequence downstream of the lysine–glycine repeat motif in OsMET1a showed a higher conservation (86.5%) with that of OsMET1b than did that (67.7%) for the N terminal domain (residues 1–1059). The inferred amino acid sequences of OsMET1a and OsMET1b contain several functional regions.&lt;br /&gt;
[[File:1.png]]&lt;br /&gt;
&lt;br /&gt;
Figure 1:Proportionate diagram of OsMET1-1 showing conserved domains: S-stretch serine-rich region; E-rich region glutamic acid-rich region; BAH bromo adjacent homology domain (black boxes with white dots); IQ motif (calmodulin binding) isoleucine (I) and glutamine (Q) motif (hatched box); NLS putative nuclear localization signal (oval); KG linker the lysine-glycine repeat, KNKGKG (gray box); I to X the catalytic domain with eight highly conserved DNA MTase motifs (black bars).&lt;br /&gt;
&lt;br /&gt;
===Mutation assay===&lt;br /&gt;
* RNAi-mediated  knockdown  analysis of the rice MET1 genes showed that it resulted in reactivation of a silenced β-glucuronidase (GUS) transgene in rice callus.&lt;br /&gt;
* A Osmet1a null mutant has no obvious phenotypes, while Osmet1b null mutant exhibited abnormal seed phenotypes, such as early embryonic lethality, decreased levels of DNA methylation at repetitive CentO sequences and at the FIEI gene locus in the embryos.&lt;br /&gt;
[[File:Figure 1.Phenotyes of normal type seeds and OsMET1b null mutant type(A to C) seeds.png]]&lt;br /&gt;
&lt;br /&gt;
Figure 2.Phenotyes of normal type seeds and OsMET1b null mutant type(A to C) seeds&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
* Ribonuclease protection assays showed that MET1a and MET1b both express in highly replicating and dividing cells;&lt;br /&gt;
* MET1b is more abundantly expressed than MET1a in all of the tissues examined, like callus, root and inflorescence.&lt;br /&gt;
* OsMET1b does not express in differentiated tissue (10-day-old leaf), and no expression for either gene was found in mature leaves.&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
This phylogenetic relationships between eukaryotic and prokaryotic DNA methytransferase were derived using the AlignX program of the VectorNTI suite, suggesting that the rice DNA methytransferase are related to DNA methytransferase of Dnmt1/MET1 class in diverse organisms from several kingdom.&lt;br /&gt;
[[File:3.jpg]]&lt;br /&gt;
&lt;br /&gt;
Figure 3. Phylogenetic relationships between eukaryotic and prokaryotic DNA methytransferase&lt;br /&gt;
Phylogenetic relationships between eukaryotic and prokaryotic MTases were derived using the AlignX program of the VectorNTI suite with the following GenBank accessions: maize MET1 (AF063403), rice MET1-1 (OsMET1-1, AF462029), rice MET1-2 (OsMET1-2, TPA BK001405), Arabidopsis MET1(AtMET1, AT5G49160) and MET2 (MET2-type C-5 DNA MTase, AT4G08990), pea MET1 (putative C-5 DNA MTase, AF034419), carrot MET1 (carrot C-5 DNA MTase, AF007807) and MET2 (MET2-type C-5 DNA MTase, AF007808), tobacco MET1 (NtMET1, AB030726), tomato (putative C-5 DNA MTase AJ002140), rat DNMT1 (AB012214), human DNMT1 (AF180682), Xenopus DNMT1(D78638), zebra fish DNMT1 (AF483203), chicken DNMT1 (2112268A), Neurospora DIM2 (AF348971), Ascobolus DNMTase (Z96933), rice MET2a (AC069324), maize MET2a (AF243043) and Haemophilus haemolyticus M.HhaI (XYH1H1)&lt;br /&gt;
&lt;br /&gt;
==Labs working on this gene==&lt;br /&gt;
* Institute of Developmental and Molecular Biology, and Department of Biology, Texas A&amp;amp;M University, College Station, TX, USA&lt;br /&gt;
* National Institute for Basic Biology, Okazaki, Japan&lt;br /&gt;
* Graduate School of Science and Technology, Chiba University, Matsudo, Japan&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 = Os07g0182900|&lt;br /&gt;
Description = Similar to Cytosine-5 DNA methyltransferase MET1 (Fragment)|&lt;br /&gt;
Version = NM_001065587.1 GI:115470906 GeneID:4342575|&lt;br /&gt;
Length = 2298 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os07g0182900, 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 7|Chromosome 7]]|&lt;br /&gt;
AP = Chromosome 7:4421779..4424076|&lt;br /&gt;
CDS = 4421780..4421864,4421955..4422066,4422154..4422301,4422417..4422614,4422710..4422988&amp;lt;br&amp;gt;,4423084..4423245,4423344..4423562,4423676..4423810|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008400:4421779..4424076&lt;br /&gt;
source=RiceChromosome07&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_008400:4421779..4424076&lt;br /&gt;
source=RiceChromosome07&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;acaaaggtgtccaaagagaaccgtcttgcaactcttgacatttttgctggctgtggaggtttatcagaaggactgcagcaagctggtgtatcgtttacaaagtgggcgattgaatatgaggaaccagctggtgaagcatttaccaaaaatcatccagaagctgcggtgtttgtggataactgcaatgtgattttgaaggcaattatggacaaatgtggagatgctgatgattgcatttcaacttctgaggctgctgaacaagcagctaaattttctcaggacaatattatgaaccttcctgtccctggtgaagtagaattcataaatggtggtcctccatgtcagggcttttctgggatgaacagatttaaccaaagcccatggagtaaagttcaatgtgagatgattttagcattcctgtcttttgctgaatatttccgccccagattctttcttttagaaaatgttaggaactttgtttcattcaacaaaggacagacatttcgactgacagttgcatcccttctggagatgggataccaggtccggtttggaattttagaggcagggacttttggtgttgctcagtccaggaaaagagcattcatttgggctgctgcacctggagagactctgcctgattggccagaaccaatgcatgtgtttgctagccctgagctgaaaataaatttgcctgatggtaaatactatgcagctgcaaaaagcactgctggtggtgctcctttccgtgcaataacagttagagatacaataggcgatttaccaaaggtggagaatggcgccagtaaactcctacttgagtacggtggcgaacccatctcctggttccagaagaagattagagggaacacgatcgcgctgaatgatcacatatctaaggagatgaatgaactgaacctcatcagatgccaacgcattccaaagcggcctggttgtgattggcatgacctaccagatgagaaggtgaaactatcatctggccaactggtggacctgatcccttggtgcctgcctaacacagctaaaaggcacaaccagtggaaagggctttatggtaggctggattgggagggcaatttccctacttctgtgacagacccccagccaatgggcaaggttggcatgtgcttccaccctgaccaggataggatcatcacagtccgtgaatgtgcgcgatctcagggctttcctgacaactaccagttcgcgggcaacatccagagcaagcacaggcagattggcaatgcggtgcctccacctcttgccttcgccctcgggaggaaactgaaggaagctgttgatgcaaagcgtcagtag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;TKVSKENRLATLDIFAGCGGLSEGLQQAGVSFTKWAIEYEEPAG                     EAFTKNHPEAAVFVDNCNVILKAIMDKCGDADDCISTSEAAEQAAKFSQDNIMNLPVP                     GEVEFINGGPPCQGFSGMNRFNQSPWSKVQCEMILAFLSFAEYFRPRFFLLENVRNFV                     SFNKGQTFRLTVASLLEMGYQVRFGILEAGTFGVAQSRKRAFIWAAAPGETLPDWPEP                     MHVFASPELKINLPDGKYYAAAKSTAGGAPFRAITVRDTIGDLPKVENGASKLLLEYG                     GEPISWFQKKIRGNTIALNDHISKEMNELNLIRCQRIPKRPGCDWHDLPDEKVKLSSG                     QLVDLIPWCLPNTAKRHNQWKGLYGRLDWEGNFPTSVTDPQPMGKVGMCFHPDQDRII                     TVRECARSQGFPDNYQFAGNIQSKHRQIGNAVPPPLAFALGRKLKEAVDAKRQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;2..86#177..288#376..523#639..836#932..1210#1306..1467#1566..1784#1898..2032#tacaaaggtgtccaaagagaaccgtcttgcaactcttgacatttttgctggctgtggaggtttatcagaaggactgcagcaagctggtatgcactttccttcaataatggtgtttagctttatcatcaacatgtcggccatcagactgatattttattaccatttaaattctgtaggtgtatcgtttacaaagtgggcgattgaatatgaggaaccagctggtgaagcatttaccaaaaatcatccagaagctgcggtgtttgtggataactgcaatgtgattttgaagtaggtgcaccgtgcacttccttgattttttctgtggttttctttttacctatatagctcaatagggactgttatatgattttgcagggcaattatggacaaatgtggagatgctgatgattgcatttcaacttctgaggctgctgaacaagcagctaaattttctcaggacaatattatgaaccttcctgtccctggtgaagtagaattcataaatggtggtcctccatgtcaggtatattattttgctatacttgatggaattttctttgcacctaggcaagcaaattgtttgcacttcaatacttgtgataaatgacttcaattttgtaatttttttctcaactcagggcttttctgggatgaacagatttaaccaaagcccatggagtaaagttcaatgtgagatgattttagcattcctgtcttttgctgaatatttccgccccagattctttcttttagaaaatgttaggaactttgtttcattcaacaaaggacagacatttcgactgacagttgcatcccttctggagatgggataccaggtaattattcttctggttatacatacttaaaatgcctatgtacagcatttgttttgaatcttataataaccagaagctgtttacttgttgcttaggtccggtttggaattttagaggcagggacttttggtgttgctcagtccaggaaaagagcattcatttgggctgctgcacctggagagactctgcctgattggccagaaccaatgcatgtgtttgctagccctgagctgaaaataaatttgcctgatggtaaatactatgcagctgcaaaaagcactgctggtggtgctcctttccgtgcaataacagttagagatacaataggcgatttaccaaaggtggagaatggcgccagtaaactcctacttgaggtaaaattgcttctcctatatggctatccgctccattttatcctgtttcttctcttgatttatatgctgaatgaatcccctcttttgtaatgcagtacggtggcgaacccatctcctggttccagaagaagattagagggaacacgatcgcgctgaatgatcacatatctaaggagatgaatgaactgaacctcatcagatgccaacgcattccaaagcggcctggttgtgattggcatgacctaccagatgagaaggtaaatgccatctaccttgcggttgcattcacttccttttgtgctcttccatacattccttgcatcagcggaatgttaaccattatgagcgtgtgcaggtgaaactatcatctggccaactggtggacctgatcccttggtgcctgcctaacacagctaaaaggcacaaccagtggaaagggctttatggtaggctggattgggagggcaatttccctacttctgtgacagacccccagccaatgggcaaggttggcatgtgcttccaccctgaccaggataggatcatcacagtccgtgaatgtgcgcgatctcaggtaagctgctattgctatccatccattcaacattctcttcctgtcttctaagatattgtgaatttggaggggagtcagtactgaccgtttaactaacctattcttgtctgcagggctttcctgacaactaccagttcgcgggcaacatccagagcaagcacaggcagattggcaatgcggtgcctccacctcttgccttcgccctcgggaggaaactgaaggaagctgttgatgcaaagcgtcagtaggtgctcagagtccttctccgatgatcgagggagatgattctcccctgaaaagaaacaaacaaccaaacatatgagtgtacttattttaattgtgcgctgcatttaactttgtgtgttgattaagattttagtcatatagatccttggtaaccttgtacattttagaggttgtgttgtgattgatacccttgattcaggggtatgatttagtggctgtattcagatatttaaacaaaataatactagttagtgatggttgaattgtt&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001065587.1 RefSeq:Os07g0182900]|&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 7]]&lt;br /&gt;
[[Category:Chromosome 7]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os07g0182900&amp;diff=177581</id>
		<title>Os07g0182900</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os07g0182900&amp;diff=177581"/>
				<updated>2014-06-04T14:32:54Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
DNA methylation is a heritable epigenetic mark that regulates expression of genes involved in developmental processes DNA. In mammals, DNA methylation predominantly occurs in CG dinucleotides and is maintained by DNA methyltransferase1, While in plants, CG methylation&lt;br /&gt;
is maintained by methyltransferase1(MET1).DNA methytransferase (OsMET1) genes from rice (Oryza sativa L) have two types, OsMET1a and OsMET1b, on chromosomes 3 and 7, respectively, each encoding a cytosine-5 DNA methyltransferase (MTase), which are mainly responsible for maintaining CG dinucleotide methylation after DNA replication.OsMET1 is a plant homolog of mammalian DNA methyltransferase1(DNMT1), and MET1b plays a major role in the maintenance DNA methylation compared to MET1a, which is indispensable for the normal development of embryos in rice.&lt;br /&gt;
&lt;br /&gt;
===Sequence comparison between OsMET1a and OsMET1b===&lt;br /&gt;
*OsMET1a has an open reading frame of 4,566 nucleotides with 12 exons and 11 introns while OsMET1b has an open reading frame of 4,491; nucleotides with 11 exons and 10 introns. Although OsMET1a and OsMET1b have high sequence similarity overall, they share only 24%; dentity in exon 1, and intron 3 of OsMET1a is absent from OsMET1b.&lt;br /&gt;
*A lysine–glycine repeat that is highly conserved in DNA MTases is present two-thirds of the way through the protein, separating the catalytic and regulatory domains in both OsMET1a and OsMET1b.&lt;br /&gt;
*The amino acid sequence downstream of the lysine–glycine repeat motif in OsMET1a showed a higher conservation (86.5%) with that of OsMET1b than did that (67.7%) for the N terminal domain (residues 1–1059). The inferred amino acid sequences of OsMET1a and OsMET1b contain several functional regions.&lt;br /&gt;
[[File:1.png]]&lt;br /&gt;
&lt;br /&gt;
Figure 1:Proportionate diagram of OsMET1-1 showing conserved domains: S-stretch serine-rich region; E-rich region glutamic acid-rich region; BAH bromo adjacent homology domain (black boxes with white dots); IQ motif (calmodulin binding) isoleucine (I) and glutamine (Q) motif (hatched box); NLS putative nuclear localization signal (oval); KG linker the lysine-glycine repeat, KNKGKG (gray box); I to X the catalytic domain with eight highly conserved DNA MTase motifs (black bars).&lt;br /&gt;
&lt;br /&gt;
===Mutation assay===&lt;br /&gt;
* RNAi-mediated  knockdown  analysis of the rice MET1 genes showed that it resulted in reactivation of a silenced β-glucuronidase (GUS) transgene in rice callus.&lt;br /&gt;
* A Osmet1a null mutant has no obvious phenotypes, while Osmet1b null mutant exhibited abnormal seed phenotypes, such as early embryonic lethality, decreased levels of DNA methylation at repetitive CentO sequences and at the FIEI gene locus in the embryos.&lt;br /&gt;
[[File:Figure 1.Phenotyes of normal type seeds and OsMET1b null mutant type(A to C) seeds.png]]&lt;br /&gt;
&lt;br /&gt;
Figure 2.Phenotyes of normal type seeds and OsMET1b null mutant type(A to C) seeds&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
* Ribonuclease protection assays showed that MET1a and MET1b both express in highly replicating and dividing cells;&lt;br /&gt;
* MET1b is more abundantly expressed than MET1a in all of the tissues examined, like callus, root and inflorescence.&lt;br /&gt;
* OsMET1b does not express in differentiated tissue (10-day-old leaf), and no expression for either gene was found in mature leaves.&lt;br /&gt;
&lt;br /&gt;
===Evolution===&lt;br /&gt;
This phylogenetic relationships between eukaryotic and prokaryotic DNA methytransferase were derived using the AlignX program of the VectorNTI suite, suggesting that the rice DNA methytransferase are related to DNA methytransferase of Dnmt1/MET1 class in diverse organisms from several kingdom.&lt;br /&gt;
[[File:3.jpg]]&lt;br /&gt;
&lt;br /&gt;
Figure 3. Phylogenetic relationships between eukaryotic and prokaryotic DNA methytransferase&lt;br /&gt;
Phylogenetic relationships between eukaryotic and prokaryotic MTases were derived using the AlignX program of the VectorNTI suite with the following GenBank accessions: maize MET1 (AF063403), rice MET1-1 (OsMET1-1, AF462029), rice MET1-2 (OsMET1-2, TPA BK001405), Arabidopsis MET1(AtMET1, AT5G49160) and MET2 (MET2-type C-5 DNA MTase, AT4G08990), pea MET1 (putative C-5 DNA MTase, AF034419), carrot MET1 (carrot C-5 DNA MTase, AF007807) and MET2 (MET2-type C-5 DNA MTase, AF007808), tobacco MET1 (NtMET1, AB030726), tomato (putative C-5 DNA MTase AJ002140), rat DNMT1 (AB012214), human DNMT1 (AF180682), Xenopus DNMT1(D78638), zebra fish DNMT1 (AF483203), chicken DNMT1 (2112268A), Neurospora DIM2 (AF348971), Ascobolus DNMTase (Z96933), rice MET2a (AC069324), maize MET2a (AF243043) and Haemophilus haemolyticus M.HhaI (XYH1H1)&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 = Os07g0182900|&lt;br /&gt;
Description = Similar to Cytosine-5 DNA methyltransferase MET1 (Fragment)|&lt;br /&gt;
Version = NM_001065587.1 GI:115470906 GeneID:4342575|&lt;br /&gt;
Length = 2298 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os07g0182900, 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 7|Chromosome 7]]|&lt;br /&gt;
AP = Chromosome 7:4421779..4424076|&lt;br /&gt;
CDS = 4421780..4421864,4421955..4422066,4422154..4422301,4422417..4422614,4422710..4422988&amp;lt;br&amp;gt;,4423084..4423245,4423344..4423562,4423676..4423810|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008400:4421779..4424076&lt;br /&gt;
source=RiceChromosome07&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_008400:4421779..4424076&lt;br /&gt;
source=RiceChromosome07&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;acaaaggtgtccaaagagaaccgtcttgcaactcttgacatttttgctggctgtggaggtttatcagaaggactgcagcaagctggtgtatcgtttacaaagtgggcgattgaatatgaggaaccagctggtgaagcatttaccaaaaatcatccagaagctgcggtgtttgtggataactgcaatgtgattttgaaggcaattatggacaaatgtggagatgctgatgattgcatttcaacttctgaggctgctgaacaagcagctaaattttctcaggacaatattatgaaccttcctgtccctggtgaagtagaattcataaatggtggtcctccatgtcagggcttttctgggatgaacagatttaaccaaagcccatggagtaaagttcaatgtgagatgattttagcattcctgtcttttgctgaatatttccgccccagattctttcttttagaaaatgttaggaactttgtttcattcaacaaaggacagacatttcgactgacagttgcatcccttctggagatgggataccaggtccggtttggaattttagaggcagggacttttggtgttgctcagtccaggaaaagagcattcatttgggctgctgcacctggagagactctgcctgattggccagaaccaatgcatgtgtttgctagccctgagctgaaaataaatttgcctgatggtaaatactatgcagctgcaaaaagcactgctggtggtgctcctttccgtgcaataacagttagagatacaataggcgatttaccaaaggtggagaatggcgccagtaaactcctacttgagtacggtggcgaacccatctcctggttccagaagaagattagagggaacacgatcgcgctgaatgatcacatatctaaggagatgaatgaactgaacctcatcagatgccaacgcattccaaagcggcctggttgtgattggcatgacctaccagatgagaaggtgaaactatcatctggccaactggtggacctgatcccttggtgcctgcctaacacagctaaaaggcacaaccagtggaaagggctttatggtaggctggattgggagggcaatttccctacttctgtgacagacccccagccaatgggcaaggttggcatgtgcttccaccctgaccaggataggatcatcacagtccgtgaatgtgcgcgatctcagggctttcctgacaactaccagttcgcgggcaacatccagagcaagcacaggcagattggcaatgcggtgcctccacctcttgccttcgccctcgggaggaaactgaaggaagctgttgatgcaaagcgtcagtag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;TKVSKENRLATLDIFAGCGGLSEGLQQAGVSFTKWAIEYEEPAG                     EAFTKNHPEAAVFVDNCNVILKAIMDKCGDADDCISTSEAAEQAAKFSQDNIMNLPVP                     GEVEFINGGPPCQGFSGMNRFNQSPWSKVQCEMILAFLSFAEYFRPRFFLLENVRNFV                     SFNKGQTFRLTVASLLEMGYQVRFGILEAGTFGVAQSRKRAFIWAAAPGETLPDWPEP                     MHVFASPELKINLPDGKYYAAAKSTAGGAPFRAITVRDTIGDLPKVENGASKLLLEYG                     GEPISWFQKKIRGNTIALNDHISKEMNELNLIRCQRIPKRPGCDWHDLPDEKVKLSSG                     QLVDLIPWCLPNTAKRHNQWKGLYGRLDWEGNFPTSVTDPQPMGKVGMCFHPDQDRII                     TVRECARSQGFPDNYQFAGNIQSKHRQIGNAVPPPLAFALGRKLKEAVDAKRQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;2..86#177..288#376..523#639..836#932..1210#1306..1467#1566..1784#1898..2032#tacaaaggtgtccaaagagaaccgtcttgcaactcttgacatttttgctggctgtggaggtttatcagaaggactgcagcaagctggtatgcactttccttcaataatggtgtttagctttatcatcaacatgtcggccatcagactgatattttattaccatttaaattctgtaggtgtatcgtttacaaagtgggcgattgaatatgaggaaccagctggtgaagcatttaccaaaaatcatccagaagctgcggtgtttgtggataactgcaatgtgattttgaagtaggtgcaccgtgcacttccttgattttttctgtggttttctttttacctatatagctcaatagggactgttatatgattttgcagggcaattatggacaaatgtggagatgctgatgattgcatttcaacttctgaggctgctgaacaagcagctaaattttctcaggacaatattatgaaccttcctgtccctggtgaagtagaattcataaatggtggtcctccatgtcaggtatattattttgctatacttgatggaattttctttgcacctaggcaagcaaattgtttgcacttcaatacttgtgataaatgacttcaattttgtaatttttttctcaactcagggcttttctgggatgaacagatttaaccaaagcccatggagtaaagttcaatgtgagatgattttagcattcctgtcttttgctgaatatttccgccccagattctttcttttagaaaatgttaggaactttgtttcattcaacaaaggacagacatttcgactgacagttgcatcccttctggagatgggataccaggtaattattcttctggttatacatacttaaaatgcctatgtacagcatttgttttgaatcttataataaccagaagctgtttacttgttgcttaggtccggtttggaattttagaggcagggacttttggtgttgctcagtccaggaaaagagcattcatttgggctgctgcacctggagagactctgcctgattggccagaaccaatgcatgtgtttgctagccctgagctgaaaataaatttgcctgatggtaaatactatgcagctgcaaaaagcactgctggtggtgctcctttccgtgcaataacagttagagatacaataggcgatttaccaaaggtggagaatggcgccagtaaactcctacttgaggtaaaattgcttctcctatatggctatccgctccattttatcctgtttcttctcttgatttatatgctgaatgaatcccctcttttgtaatgcagtacggtggcgaacccatctcctggttccagaagaagattagagggaacacgatcgcgctgaatgatcacatatctaaggagatgaatgaactgaacctcatcagatgccaacgcattccaaagcggcctggttgtgattggcatgacctaccagatgagaaggtaaatgccatctaccttgcggttgcattcacttccttttgtgctcttccatacattccttgcatcagcggaatgttaaccattatgagcgtgtgcaggtgaaactatcatctggccaactggtggacctgatcccttggtgcctgcctaacacagctaaaaggcacaaccagtggaaagggctttatggtaggctggattgggagggcaatttccctacttctgtgacagacccccagccaatgggcaaggttggcatgtgcttccaccctgaccaggataggatcatcacagtccgtgaatgtgcgcgatctcaggtaagctgctattgctatccatccattcaacattctcttcctgtcttctaagatattgtgaatttggaggggagtcagtactgaccgtttaactaacctattcttgtctgcagggctttcctgacaactaccagttcgcgggcaacatccagagcaagcacaggcagattggcaatgcggtgcctccacctcttgccttcgccctcgggaggaaactgaaggaagctgttgatgcaaagcgtcagtaggtgctcagagtccttctccgatgatcgagggagatgattctcccctgaaaagaaacaaacaaccaaacatatgagtgtacttattttaattgtgcgctgcatttaactttgtgtgttgattaagattttagtcatatagatccttggtaaccttgtacattttagaggttgtgttgtgattgatacccttgattcaggggtatgatttagtggctgtattcagatatttaaacaaaataatactagttagtgatggttgaattgtt&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001065587.1 RefSeq:Os07g0182900]|&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 7]]&lt;br /&gt;
[[Category:Chromosome 7]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:3.jpg&amp;diff=177578</id>
		<title>File:3.jpg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:3.jpg&amp;diff=177578"/>
				<updated>2014-06-04T14:28:58Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: uploaded a new version of &amp;amp;quot;File:3.jpg&amp;amp;quot;&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176491</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176491"/>
				<updated>2014-06-03T05:37:26Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Expression of OsTPC1in rice tissues.jpg|right|thumb|250px|Fig-4 Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electrophoresis.From&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;]]&lt;br /&gt;
[[File:Fig-7 Intracellular localization of the GFP-OsTPC1 fusion protein.jpg|left|thumb|250px|Fig-7:Intracellular localization of the GFP-OsTPC1 fusion protein. From &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&lt;br /&gt;
&lt;br /&gt;
===Cellular localization===&lt;br /&gt;
To study the intracellular localization of the OsTPC1 protein, ''Takamitsu Kurusu et al'' introduced the green fluorescent protein (GFP) construct fused to the N-terminus of OsTPC1 into onion epidermal cells and examined its intracellular localization by confocal laser scanning microscopy. When GFP alone was expressed, it localized to the nucleus and the cytoplasm[Fig-7 a-c],In contrast, the GFP-OsTPC1fusion protein was specifically targeted to the plasma membrane in patches (Figure-7 d–f), suggesting that OsTPC1 functions at the plasma membrane.&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
===Evolution===&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatctttttggtcgcttgcattatgtaggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagtaagaaggcatcactattactgaagtgtttatgatagttcctgcatatgacatgcatacaaattaaccttatacatctttgagcaggagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcaggtgggttcctcacctctgtcctaattcacatgatgatcgctatttttttttgttatgaattctgagttattattattattatgcttcacatactgctaacatggcatattttttgtgatctagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactgtaagtgttttccattttatgttgtcctgcaaactagtgcaccacaatttggcaacgtattttagtgcaagtattttttatgttttcctgaaaactgatgcacctcagcagtacttcagtactttagtataactttgatgttcaggttatccttcatcagagtatagtctgatcacttcggttctcagttgggattattttaaatgttcaaattatcaaataagcagcactagctcaccttcgcaaggcgtgatgagattaatattatagatcttagattagggaaaacgagttagcaagaaaatcaaggtcctgctgctattgagatgatatagacgtgtttagttgtttggctgtgttattcatgagtattattaatattggctgctgatatccctttcttccctatctgtggacatcagggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacaggtaaccaaaatgccctcttacattacactccttcaaatctccttattacattatagagtgatttagtccttgagggggtaccataccttttagtattaaatttgtgctaccttcaggtacctcaacttaaatttgtgctaccttcaagtacctcaacacaagggaggtaccaaaaatttacactgaaaatacagtacctcccggtacatcctcaaggaatgtaaacactgcattttatgggtagtaagtttatttttacaatcttttttgtggagatgttcctccatttcctgaaggaatcttaagtcagtcaaaatcaatatctgtcatgcatgaaaccaatcttcaaaattaaatccatagtaggtaaagtggttagcaaacgtgctgaaggagatcccacccaacccagatgccaacaaaattaactccatgtccatgccaagggtataagaagtctctaattgccccacttccgtgcaagcttgatgctatctgtgaaagtggccgatccattaaggaaggtctttttttttttatccttacactgaaaactgaaaagggtaactaactcatgcaaatggtaagcaaaagaaaaaccctttaaacaatgacgtgactgcctttggaagatgggcatccttactggtctgtagagccaaatatccatttttatgatgatgcactggtacttgaatactcattagatgacatgccatctcgaagagaacacaggtcagaatgggtgtctgctttcgttattacaatctcaatgctattccaaattacattatttcagttttgctccattattttgacattcataacatatatcagaaatcagcagaattaattgtgtagaaaatgtcaaattaatatctagaagcctagaacatggttcttacaattgcagcatatcatgctgtccacttttcggttttgcatttattgattttattgaaccaacaacttaatggtttgtaagtgtaagttagttttgcttattatcataacatggtagggagacatcccttcccctccaaagttgatgacgacagatgttatccttgcattttaccaaattcctgctagctcctggatcagttatgggtctcacagaatggtgcctccttttgtagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggtacgtgctcctactatcttcagtaggcatgtcttagttttaataattcttcaagcacgttcaccctccatcctctccccctaagcccccccccccccccccccaaaaaaaaaagtacttgtaagaatgtttataacaaaaacacttaaggctgtgtttagtggtggttggaaaccttttccctccgcacggaaaatgaggtagcacattagcacatgattaattaagaattagctaaaaacttaaaaatggattaatatgatttttaagcaacttttctatagactttttttttggtgcaaaaaagcaccattcagtagttcgggaagcatgctcatgggaaacgagggagtagaggttgggaaacttgagttctgaacgcagcctaagaagctggtactaaggccatccccaacccagaaactatcaaatagtttccgtacttgctatgtcatatagacactatgtatagaaactacaattcaatggatggtgtcttcaaattaaattctcatccaatcacctctcttctctctccttttatctacctatccccttgttttcattcttggttcttgtgtagagatggtttcttgcatgagaaatggtttattcatctttttacctctctcctctttagctctcttgccacatcagatttttgcttatgtggcaatgcattaaatgctatggagactagatggcatggttggggatggcctaattatcacctgtaccattttctgaaagtatacatgcctcagtgaggtcttaattctgatgttaatttttatcctcatttgatggtatggcatgttagtgtttttttatctcacttatttatccttgtccaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctgtaagttgtacttattttgatgttcataattttctactctttctttatcatggaaaattgaaagctatactccttcaacctaaaacaaataccctctatttgacttgccacaaaccccaatgcaaaatcttggctgttattttattgttacttttagcaaaagtttaaggaaatgttttgtgacattatgtttttgcccttcccttgtttacacaatctgaatacttcaattgcaaatgtatcaatgaccaaatattgttaagagtgtcaaggatataaatacgtcgatgttgcactgtttgcagcaacattctaccttgtttgacctaatgttgtacatatttttgcagccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacggtatggcagtttttttttcttctaatttgtgttttatttttattcaacttggaatcatactttatattgttagcagtattctatttccatatctgctagacttaaatttatactcttagcacttctcagtatttgttttctattttttgtttactatcaactactgagtacatggcagcgtaatcagcctactatattagctttgcaatagtttgttgactacaaaattattcaatctaagttatctatgctaatataaaagatggtaatggtgagtctaccaccaccaacacctgaccacccaactaccatgcgggacctacgaacagtgagacaaaactttgcttgtttcccagcccccacatgctatagaccccagcgcaaggaaaatatgacaatagaatattatggattttttcatctttgtgaaatgacaacaaaattagcacaatgataatatattagacaattagaaacaaattttgttgcaacatacgggcattatgctagtgtttaacaacgttttgtagacaaggaagcatggcttcattttagaaccaagaattgaaataattaaattcacaaacggatgtgaaaactgtatgtaatccctgggatatgatttttgcagctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggtaagcatattttggtgaactttgtttcaacaatgctctgtaagcagtaactatctcctataaaatctccctggcatattatcttgagtttccaacttaaagttgacacttgaagaataattgccatttctcttaggtttgatgattatgtagccgaacttcagaatttgtattctactgtagtagtctgtcgttcttaaattttgttgaaagggtctactgtgttttcctgatttaggttgctgcagtactgtggggtcgatacagaatcgcatatgattgcaatggtcataagtttattccctctatttagaaatgtatattgtatcagaaatcatgtaatcaaacttcttacactgttttcacatccgtttgtgaatttaattatttcaattcttggctgtgtacatctgtttggatgtagaggccggtttaatccatcatcttaaaaaaaagttcttacactgaggtttgacacaattaaattcgtagtttattgaacttcacgagtatattcataagaaagtacccattctgtcctttttttataaggtgcatatggtgcacgatgttatggagtgctggcattgtaatgtaataatatgttcatatccttgtctt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176489</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176489"/>
				<updated>2014-06-03T05:34:57Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Expression of OsTPC1in rice tissues.jpg|right|thumb|250px|Fig-4 Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electrophoresis.From&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;]]&lt;br /&gt;
[[File:Fig-7 Intracellular localization of the GFP-OsTPC1 fusion protein.jpg|left|thumb|250px|Intracellular localization of the GFP-OsTPC1 fusion protein. From &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&lt;br /&gt;
&lt;br /&gt;
===Cellular localization===&lt;br /&gt;
To study the intracellular localization of the OsTPC1 protein, ''Takamitsu Kurusu et al'' introduced the green fluorescent protein (GFP) construct fused to the N-terminus of OsTPC1 into onion epidermal cells and examined its intracellular localization by confocal laser scanning microscopy. When GFP alone was expressed, it localized to the nucleus and the cytoplasm[Fig-7 a-c],In contrast, the GFP-OsTPC1fusion protein was specifically targeted to the plasma membrane in patches (Figure-7 d–f), suggesting that OsTPC1 functions at the plasma membrane.&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
===Evolution===&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176486</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176486"/>
				<updated>2014-06-03T05:31:54Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Expression of OsTPC1in rice tissues.jpg|right|thumb|250px|Fig-4 Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electrophoresis.From&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;]]&lt;br /&gt;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&lt;br /&gt;
&lt;br /&gt;
===Cellular localization===&lt;br /&gt;
To study the intracellular localization of the OsTPC1 protein, ''Takamitsu Kurusu et al'' introduced the green fluorescent protein (GFP) construct fused to the N-terminus of OsTPC1 into onion epidermal cells and examined its intracellular localization by confocal laser scanning microscopy. When GFP alone was expressed, it localized to the nucleus and the cytoplasm[Fig-7 a-c],In contrast, the GFP-OsTPC1fusion protein was specifically targeted to the plasma membrane in patches (Figure-7 d–f), suggesting that OsTPC1 functions at the plasma membrane.&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;br /&gt;
===Evolution===&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig-7_Intracellular_localization_of_the_GFP-OsTPC1_fusion_protein.jpg&amp;diff=176482</id>
		<title>File:Fig-7 Intracellular localization of the GFP-OsTPC1 fusion protein.jpg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig-7_Intracellular_localization_of_the_GFP-OsTPC1_fusion_protein.jpg&amp;diff=176482"/>
				<updated>2014-06-03T05:27:49Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: Fig-7:.Intracellular localization of the GFP-OsTPC1 fusion protein. The GFP-OsTPC1plasmid was introduced into onion epidermal cells by bombardment. (a–c)35S:GFP, (d–f)35S:GFP-OsTPC1. (a–f) Optical sections of an onion epidermal cell, from (a, d) the&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Fig-7:.Intracellular localization of the GFP-OsTPC1 fusion protein. The GFP-OsTPC1plasmid was introduced into onion epidermal cells by bombardment. (a–c)35S:GFP, (d–f)35S:GFP-OsTPC1. (a–f) Optical sections of an onion epidermal cell, from (a, d) the surface to (c, f) the equatorial plane, were obtained by confocal laser scanning microscopy. f: GFP fluorescence, m: merge. Scale bar: 20 um.&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176481</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176481"/>
				<updated>2014-06-03T05:26:20Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Expression of OsTPC1in rice tissues.jpg|right|thumb|250px|Fig-4 Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electrophoresis.From&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;]]&lt;br /&gt;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&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;
Please input related labs here.&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;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176480</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176480"/>
				<updated>2014-06-03T05:25:17Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Expression of OsTPC1in rice tissues.jpg|right|thumb|250px|Fig-4 Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electrophoresis.]]&lt;br /&gt;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176479</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176479"/>
				<updated>2014-06-03T05:24:49Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Expression of OsTPC1in rice tissues.jpg|right|thumb|200px|Fig-4 Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electrophoresis.]]&lt;br /&gt;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176478</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176478"/>
				<updated>2014-06-03T05:24:31Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&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;
Please input related labs here.&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;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176477</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176477"/>
				<updated>2014-06-03T05:23:54Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Expression of OsTPC1in rice tissues.jpg|right|thumb|200px|Fig-4 Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electrophoresis.]]&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&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;
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==Labs working on this gene==&lt;br /&gt;
Please input related labs here.&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;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176475</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176475"/>
				<updated>2014-06-03T05:21:21Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Expression of OsTPC1 in rice tissues.jpg|right|thumb|200px|Fig-4 Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electrophoresis.]]&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&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;
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==Labs working on this gene==&lt;br /&gt;
Please input related labs here.&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;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Expression_of_OsTPC1in_rice_tissues.jpg&amp;diff=176472</id>
		<title>File:Expression of OsTPC1in rice tissues.jpg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Expression_of_OsTPC1in_rice_tissues.jpg&amp;diff=176472"/>
				<updated>2014-06-03T05:18:25Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: Fig-4:Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electro&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;Fig-4:Expression of OsTPC1in rice tissues. First-strand cDNA was synthesized from the total RNA extracted from various tissues andamplified indicated cycles by RT-PCR. Actin cDNA was used as a control DNA. PCR products were analyzed by agarose gel electrophoresis.&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176470</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176470"/>
				<updated>2014-06-03T05:16:56Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
Expression of the OsTPC1mRNA is detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&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;
Please input related labs here.&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;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176469</id>
		<title>Os01g0678500</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0678500&amp;diff=176469"/>
				<updated>2014-06-03T05:16:19Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
'''Os01g0678500''' encodes voltage-dependent calcium channel protein TPC1(OsTCP1),which functions as major voltage-gated Ca2+ channel across the plasma membrane&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt; .As cytosolic free Ca2+ serves as an important second messenger participating in signal transduction of various environmental stresses and OsTCP1 is involved in the regulation of cytosolic Ca2+ channel,the OsTCP1 plays a important role in regulating the plant growth,acts as the major ROS-responsive Ca2+ channel and is the possible target of Al-dependent inhibition&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;.Also OsTPC1 functions as one of the key regulation factor in elicitor induced disease resistance reaction, the activation of MAPK cascade and hypersensitive cell death&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;. By generating Ostpc1 knock-out and apoaequorin-expressing Ostpc1 cells, ''Haruyasu Hamada et al''  indicates that OsTPC1 has a role in the regulation of TvX-induced sustained increase in cytosolic Ca2+&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Expression of the OsTPC1mRNA was detected at a similar level ubiquitously in calli, mature leaves and shoots except for roots where its expression was weaker.[Fig-4] &amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;&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;
Please input related labs here.&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;
Kurusu T, Sakurai Y, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ -permeable channel (OsTPC1) involved in Ca2+ influx and regulation of growth and development in rice. Plant Cell Physiol. 2004 Jun;45(6):693-702.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Kurusu T, Yagala T, Miyao A, Hirochika H, Kuchitsu K. Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.  Plant J. 2005 Jun;42(6):798-809.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Hashimoto K, Saito M, Matsuoka H, Iida K, Iida H. Functional analysis of a rice putative voltage-dependent Ca2+ channel, OsTPC1, expressed in yeast cells lackingits homologous gene CCH1.Plant Cell Physiol. 2004 Apr;45(4):496-500. &amp;lt;/ref&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Hamada H, Kurusu T, Okuma E, Nokajima H, Kiyoduka M, Koyano T, Sugiyama Y, Okada K, Koga J, Saji H, Miyao A, Hirochika H, Yamane H, Murata Y, Kuchitsu K. Regulation of a proteinaceous elicitor-induced Ca2+ influx and production of phytoalexins by a putative voltage-gated cation channel, OsTPC1, in cultured rice cells. J Biol Chem. 2012 Mar 23;287(13):9931-9. &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 = Os01g0678500|&lt;br /&gt;
Description = Similar to Two-pore calcium channel|&lt;br /&gt;
Version = NM_001050393.1 GI:115439156 GeneID:4325272|&lt;br /&gt;
Length = 14280 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0678500, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:29662516..29676795|&lt;br /&gt;
CDS = 29663493..29663580,29663659..29663699,29664261..29664332,29664532..29664618,29665072..29665162&amp;lt;br&amp;gt;,29665303..29665367,29665722..29665890,29666294..29666357,29666942..29667049&amp;lt;br&amp;gt;,29667712..29667769,29668401..29668544,29668895..29668960,29669815..29669887&amp;lt;br&amp;gt;,29671027..29671088,29671511..29671588,29671712..29671817,29671905..29672071&amp;lt;br&amp;gt;,29672549..29672609,29673792..29673901,29674421..29674516,29674942..29675049&amp;lt;br&amp;gt;,29675156..29675299,29676438..29676653|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&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_008394:29662516..29676795&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggccctttcactattgttcctcttattcgcaagctggctagcttatgtaacatttgaggatacaccacaaggaaagactgttttctcgtcatatggtaccacgttatatcagatgtttattctcttcaccacctccaataatcctgatgtatgggttcctgcttataagagctctcgttggtcctcactattttttattgtctacgtacttttgggagtttacttcctaacaaatttaattcttgctgtcatttatgatagctttaaggagcagctagcaaagcaagtttctcaggcagactgtacaaggaaaagtatactagagaaggcatttggtatcattgatgctactggtcagggttatctcaacaaagaacagtgcctatcattactagatgagctcaacaaatacagatcgttacctaaaacctcaagggaagattttgaattaatttttgccgagcttgatcagagtggtgattttaaggttacctctgaagaatttgctacactgtgcaataccattgcaataaaattccagaaagaaccacctccatcctatctcgagaagtatccatctttctatcattcagcactgtgtgaatggttgaaatcttttgtgcggagcccactgtttgagtatattgttatttttgttcttctgatgaatctagtcgctgtcattattgaaacaacgctggatatagaaaacagctcctcgcagaaagtgtggcaagaagttgagtttgtctttggatggatttacgttatagagatggcactcaaaatattttcattaggatttggtgcctactggatggaaggtcaaaacaagtttgattttgtgcttacttggactatatttattggagagactctaacatttgccttcccatcgaagctttcttttctttcaaatggagaatggattcggtaccttcttcttggaaggatgttacgcttgacaagaattctgttgcaagttcggcgtttcagagcatttgttgcaacattctttactctgatgtctagcttgatgccatatttggggattgtattctgcaccctttgcatttactgctcccttggtttgcagatatttgggggcattgtgtatgcaggaaatccaacactagaagaaaccgatctcttcagtaacgactatcttctttttaacttcaatgactatccaagtggtatggtaactctgttcaatttgttagtgatgggcaattggcaagcttggatggagagctacaggcaattgactggaagttattggagcctgatttattttgtcagcttttacctcatttcagtattactgctgcttaatctgattgtagcatttgtgttggaggcattttttgctgagatggaactggagaaagatggcgaagctgatatccaggatcctactttggaaggaagaaacaggcggcgatctgtgcgtgtgaggacaaaggggaccatggttgatattcttcttcaccatatgttgagcaatgaacttgatggatctcaaaaccgtgaccaatag&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MRERGEMREAKAPLIAEAAEHISHSHGSGSSGTGSHTSGGGGGW                     RGSRQYQRRSDALAYGNRYQKAAALVDLAEDGVGIPEDVLNDTRFERAMRFYFVYLRL                     DWLWSLNLFALILLNFLEKPLWCRGYSQHACDQRDLYFLGQLPYLSKTESLIYEGLTL                     VILVMDIFYPLSYEGLNLFWKNTINKLKVLLLFILACDILVFAFSPQPFRVAPYIRVA                     FLIMNIRELRMCAVTLVGMVGTYLNVLALSLLFLLFASWLAYVTFEDTPQGKTVFSSY                     GTTLYQMFILFTTSNNPDVWVPAYKSSRWSSLFFIVYVLLGVYFLTNLILAVIYDSFK                     EQLAKQVSQADCTRKSILEKAFGIIDATGQGYLNKEQCLSLLDELNKYRSLPKTSRED                     FELIFAELDQSGDFKVTSEEFATLCNTIAIKFQKEPPPSYLEKYPSFYHSALCEWLKS                     FVRSPLFEYIVIFVLLMNLVAVIIETTLDIENSSSQKVWQEVEFVFGWIYVIEMALKI                     FSLGFGAYWMEGQNKFDFVLTWTIFIGETLTFAFPSKLSFLSNGEWIRYLLLGRMLRL                     TRILLQVRRFRAFVATFFTLMSSLMPYLGIVFCTLCIYCSLGLQIFGGIVYAGNPTLE                     ETDLFSNDYLLFNFNDYPSGMVTLFNLLVMGNWQAWMESYRQLTGSYWSLIYFVSFYL                     ISVLLLLNLIVAFVLEAFFAEMELEKDGEADIQDPTLEGRNRRRSVRVRTKGTMVDIL                     LHHMLSNELDGSQNRDQ&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;13216..13303#13097..13137#12464..12535#12178..12264#11634..11724#11429..11493#10906..11074#10439..10502#9747..9854#9027..9084#8252..8395#7836..7901#6909..6981#5708..5769#5208..5285#4979..5084#4725..4891#4187..4247#2895..3004#2280..2375#1747..1854#1497..1640#143..358#agttaatcccactcccacttccatatcggcgtaacgctcctgtaaactaatccacttctacttccgcttccgctcgcggttccagatctctccctgcacatctgcatccactcacactcgagggagagggagagggggagagatgagggagaggggagagatgagggaggcgaaggcgcctctgatcgcggaggcggcggagcacatatcccattcccacggctccgggtcgtccggcaccggcagccacaccagcggcggcggcggcgggtggaggggctcgaggcagtaccagcgccgctcggacgccctcgcctacggcaaccggtaccagaaggcggccgccctcgtcgacctcgtcggttccctcctcctctgcctccctcttgtgtcgttcgtactcgttgttaggcgaagcgcgacgctgctttgctgtaggctgctcctgtgttgggaattgcggtgatcgtggtcgtgggtttgtcggggtgggtggtgtgcgctggcgagcgtggatgtaggggcggtgtttgatggattgtctgcccgagctcggcatgtttacgtggtgcgggagcttggcgtggtcgaggtagttgtttgcagcttgtgctctgttcggagccgtgagatagggccaaggcgccactcggcataggttgcttggcgataacctgaactttgcgcacatttacgtgccaatgccagaattaagcgtggtttcagttgtgctgttttatgacagaaaacgtactaacagtgtttaagttgactttcactatttccgatgttgcatatagctgttaacttttgtttcgatttttgcaagcgctatctttgaattatgttaaaaatgtaccatctaaaaattttatcatgtgcaaattgacgttttactataactgtcgtgtcatttgcatgtgaattctcactcaatacccagtaccataacaagaatatatgttatccgtcgacactcttagctaacggacttagcgcagtaaatcccattttcttttgcaacacaactagggtatctttaatgatgcaaaacaaggtctacatttgtgttttgcgatcagggttcactctatcggttcagggttttctatcgggggtcaccgaaatcctgaaatttcggtccaaaatttccgaaattttaaacaaaatttagttgaatttgaacaaatattatccaaattcatgaaaaaattgaaaaattcaaaaatttcggccgaattaatatcgtatcgggggtcacttggaaatttcggtccgaaatttccaaccctgtttgcgatattgttgtcattttctgatgagttcacgtcctctaccataatatcactaccattacaggcactgacgtgtgggacaataggaggataggacccacatactagtgattgtaatggtactgtaatggtagtgactttatggtagaggatcctcacccttttctgatatactgggaattaattgcaatggtttgacaggcagaagatggtgtgggtatccctgaggatgtcttgaatgacacaaggtttgagagggctatgagattctattttgtgtatctccggttggattggctgtggtcacttaacctatttgctttgattcttttgaattttctcgaggttagttatgaaaatggaacccatctattacattgtacaggaaagcggctaaaatcctgcaagtcccattatggtcatgttttgagttgtttcttttgcatttcagaagcctctctggtgccggggatattctcaacatgcttgtgatcaaagggatctttactttctggggcagttgccatacttgagcaaaactgaatctctcatatatgaggtaaggctttgtctataagagtggtgtttctatgttctctgaaaactttaattgcagaaaacttcaaaaactacagtcggtagtagattaatgagcagttggaaagtcaggtcaataatttgcttttgtaattacactcaactttgttggtgaccattaaagcaacctttggtgactatactaatcacagcttctcaatattattgttgagctttgagatgtattgcatagttagttgggccagagcatggtcatttgagtacattaaaatctgaattccatcattctagattttgtatggttatttgttgtataacaggataatgcacatgctttttttaacgaacatgtaatggtctgtattgaggactgaaaacattaatctgatatatttgacgcaaacttgccgttcttttcaatttcaggggctcacacttgttattcttgtaatggatatcttctatccactgtcctatgaaggtttaaacctattctggaagaacacaataaataaactgaaggtatggcatctgtttataaaatagatatatatgagtataaatagcaagaatagcatacatgtttgtttttctaagatccattgatgtggatagcatacaagtataaactgaagttaaataaaactatgtaactgcaaaaaataatggatgatgtggattacatctggccctactgagataaaatctaaaatttgaaggcatatgtgagtgaacattcacatatttaactactttttgtaaattaactatgtgcttttacgtatgagggatggctattttttttgttagatttgactaggcccttccaatttttgatacagttacattcaagctaaataaacttccttgttttaactagactacccattgtgctaactctgccccttttaattcctacgctgcaaacagactgtaatcctgttgttttactttaattaagcatatgtttctctctaaaaatgtgtctttcttactgcttcacaaactgtggtctatccatatttctgctttgtcttgtaggttcttcttctcttcatcttagcatgtgacatactggtgtttgcatttagtccccaacctttcagagtagctccttacatccgtgttgcgtttctaataatgaatatcaggtttgcagtgttttatctactctagactacagtttctgctgctagctttctgaattcagtatgaaggttcgttactgaatcaatctcaaagaaaactagctgggtggcccgcgcaattgcgcggctagcacccatacaaaattatctattttttacatattattttacttaaattttgttaaatagctaactcattgtcttaggactttgaaagaccgaactttatcatccaagtgtttctaattttatattttttagaagtcacgctagtcgctacccctttatttgttgccgatttaccaccgtttctattcatcctcctcatttgtcatcgttgtgttctagatggacttttttttttgaaaattccatatttttcaccctgatatttttttatttataaattgttttcctacttgaactcttataattatttttctatgtttggaatttattttatttgttacttcggattttaattaatctcgtcatgtgttcttgatggtctcttctttcaattgtctttattttttattaagaattttaattatttataattgtattcctagttgaactcttattttcctttttataatttctgaatttattttattttttatttagattttaattaatcttgttttgtgttctatatggactattctttcgatgttactttttttttattttaaattttagttgtttcaaaattgtattaatatttgaactctattttatttttctaataatttcttaatttattttattttttattccaaattttaattaatcgtgtattgggttcttatatggactctttttctaatattgcttatttttaattccaaatttcagttattttaaaattgtattcctacttggactcttctttctttttctccgattaatgtggtaatttctagcctccacaacgaacgtggtgcctcctttcaatgctatcttaataatataatagatagatagatgacctagatttctgcaggataatcatactgcatagcaaagagaagacccataaataattataattagcgttcacatagacacataggcaaacacttacctgtcccatttaggaaaagatacatgtcaatgttagttaagatatatgttatttttttgattgtttgacagatgtattaactgttccttttgtgacagggaactgcgaatgtgtgctgttacactggttggtatggttgggacataccttaatgttttggtaagactttattaattatgcaaaattactatacttctagcactgtaggacatacaatgattatattccttcagaataagccattagaagtttttgtctatgcttgagagtcacggggacctttcgttactctcttcatctgatggtttgtggtgcatgaattgaaattgtggacaccaacttataaatagtgtgggaccattgtagatttaggtaggctgggaaggagggggagattgttctcttctgacatcctgttcattcttgagttctgccctttctgctttccaatataaaagtcaattttgaactacattttacggcctagttattggaatactaattacaaagatgtttacctcaatttacttttccatgagtttcttatggttctgcatgttcatatttatgtctgcattagtgcacattatgtgttcagttttgatgcatatcttttt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/&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001050393.1 RefSeq:Os01g0678500]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176281</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176281"/>
				<updated>2014-06-02T12:49:07Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|Fig-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.Transcript analyses of rice importin.]]&lt;br /&gt;
[[File:Fig3. dark treatmeng influence the expression.jpg|middle|thumb|250px| Fig-3.An increase of importin-atranscript levels during dark-adaptation of light-grown green leaves.From  ref&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;]]&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig4 constitue exprssion.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-4.Importin-atranscript levels in different rice tissues.(A) RNA was prepared from various tissues, roots (Root), mature leaf blades (M-Leaf), flag leaf blades (F-Leaf), stems (Stem) and suspension-cultured cells (Callus), and the transcript levels for importin-α in their tissues were examined by RNA blot analysis. Mature leaves, flag leaves and stems of field-grown plants were collected at noon on a sunny day in July. (B) The effect of illumination on the transcript levels for importin-α was examined in roots and suspension-cultured cells. Roots of water-cultured seedlings and suspension-cultured cells were exposed to white light (white fluorescent lamps; 90 μmol m−2 s−1) for 24 h (L), kept in complete darkness for 24 h (D) or kept in darkness for 24 h and then re-illuminated for 3 h (+3hL).From ref &amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref4&amp;quot;&amp;gt;&lt;br /&gt;
Shoji K, Iwasaki T, Matsuki R, Miyao M, Yamamoto N. Cloning of a cDNA encoding an importin-alpha and down-regulation of the gene by light in rice leaves. Gene. 1998 Jun 8;212(2):279-86.&lt;br /&gt;
&amp;lt;/references&amp;gt;&lt;br /&gt;
&lt;br /&gt;
==Structured Information==&lt;br /&gt;
{{JaponicaGene|&lt;br /&gt;
GeneName = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176279</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176279"/>
				<updated>2014-06-02T12:45:00Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|Fig-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.Transcript analyses of rice importin.]]&lt;br /&gt;
[[File:Fig3. dark treatmeng influence the expression.jpg|middle|thumb|250px| Fig-3.An increase of importin-atranscript levels during dark-adaptation of light-grown green leaves.From  ref&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;]]&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig4 constitue exprssion.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-4.Importin-atranscript levels in different rice tissues.(A) RNA was prepared from various tissues, roots (Root), mature leaf blades (M-Leaf), flag leaf blades (F-Leaf), stems (Stem) and suspension-cultured cells (Callus), and the transcript levels for importin-α in their tissues were examined by RNA blot analysis. Mature leaves, flag leaves and stems of field-grown plants were collected at noon on a sunny day in July. (B) The effect of illumination on the transcript levels for importin-α was examined in roots and suspension-cultured cells. Roots of water-cultured seedlings and suspension-cultured cells were exposed to white light (white fluorescent lamps; 90 μmol m−2 s−1) for 24 h (L), kept in complete darkness for 24 h (D) or kept in darkness for 24 h and then re-illuminated for 3 h (+3hL).From ref &amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176278</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176278"/>
				<updated>2014-06-02T12:42:36Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|Fig-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.Transcript analyses of rice importin.]]&lt;br /&gt;
[[File:Fig3. dark treatmeng influence the expression.jpg|middle|thumb|250px| Fig-3.An increase of importin-atranscript levels during dark-adaptation of light-grown green leaves.From  ref&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;]]&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig4 constitue exprssion.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-4.Importin-atranscript levels in diVerent rice tissues.(A) RNA was prepared from various tissues, roots (Root), mature leaf blades (M-Leaf), flag leaf blades (F-Leaf), stems (Stem) and suspension-cultured cells (Callus), and the transcript levels for importin-α in their tissues were examined by RNA blot analysis. Mature leaves, flag leaves and stems of field-grown plants were collected at noon on a sunny day in July. (B) The effect of illumination on the transcript levels for importin-α was examined in roots and suspension-cultured cells. Roots of water-cultured seedlings and suspension-cultured cells were exposed to white light (white fluorescent lamps; 90 μmol m−2 s−1) for 24 h (L), kept in complete darkness for 24 h (D) or kept in darkness for 24 h and then re-illuminated for 3 h (+3hL).From &amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176277</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176277"/>
				<updated>2014-06-02T12:41:26Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|Fig-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.Transcript analyses of rice importin.]]&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig4 constitue exprssion.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-4.Importin-atranscript levels in diVerent rice tissues.(A) RNA was prepared from various tissues, roots (Root), mature leaf blades (M-Leaf), flag leaf blades (F-Leaf), stems (Stem) and suspension-cultured cells (Callus), and the transcript levels for importin-α in their tissues were examined by RNA blot analysis. Mature leaves, flag leaves and stems of field-grown plants were collected at noon on a sunny day in July. (B) The effect of illumination on the transcript levels for importin-α was examined in roots and suspension-cultured cells. Roots of water-cultured seedlings and suspension-cultured cells were exposed to white light (white fluorescent lamps; 90 μmol m−2 s−1) for 24 h (L), kept in complete darkness for 24 h (D) or kept in darkness for 24 h and then re-illuminated for 3 h (+3hL).From &amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;&lt;br /&gt;
&lt;br /&gt;
[[File:Fig3. dark treatmeng influence the expression.jpg|middle|thumb|250px| Fig-3.An increase of importin-atranscript levels during dark-adaptation of light-grown green leaves.From  ref&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;]]&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig4_constitue_exprssion.jpg&amp;diff=176276</id>
		<title>File:Fig4 constitue exprssion.jpg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig4_constitue_exprssion.jpg&amp;diff=176276"/>
				<updated>2014-06-02T12:36:36Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176275</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176275"/>
				<updated>2014-06-02T12:34:15Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|Fig-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.Transcript analyses of rice importin.]]&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig3. dark treatmeng influence the expression.jpg|middle|thumb|250px| Fig-3.An increase of importin-atranscript levels during dark-adaptation of light-grown green leaves.From  ref&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;]]&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176274</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176274"/>
				<updated>2014-06-02T12:33:33Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|Fig-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.Transcript analyses of rice importin.]]&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig3. dark treatmeng influence the expression.jpg|middle|thumb|250px| Fig-3.An increase of importin-atranscript levels during dark-adaptation of light-grown green leaves.From  ref&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt;&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176272</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176272"/>
				<updated>2014-06-02T12:24:55Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|Fig-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.Transcript analyses of rice importin.]]&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176271</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176271"/>
				<updated>2014-06-02T12:24:02Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|FIG-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.'''from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.Transcript analyses of rice importin.]]&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176270</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176270"/>
				<updated>2014-06-02T12:23:40Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|FIG-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.'''from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.Transcript analyses of rice importin.]]&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
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relative expression&lt;br /&gt;
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===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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176269</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176269"/>
				<updated>2014-06-02T12:23:10Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* Annotated Information */&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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|FIG-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.'''from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
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===Expression===&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg|right|thumb|150px|Fig-2.'''Transcript analyses of rice importinas'''.&lt;br /&gt;
&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
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relative expression&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
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&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176267</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176267"/>
				<updated>2014-06-02T12:20:23Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|FIG-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.'''from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-2.'''Transcript analyses of rice importinas'''.&lt;br /&gt;
Total RNA samples were prepared from tissues of either dark-(etiolated leaves) or&lt;br /&gt;
light-grown (green leaves and roots) rice plants (14-days-old). For dark&lt;br /&gt;
adaptation, the light-grown plants were further grown in complete&lt;br /&gt;
darkness for the indicated hours (6, 12, and 24 days, respectively). In&lt;br /&gt;
each panel, the highest transcript levels were regarded as 100% of&lt;br /&gt;
relative expression&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176266</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176266"/>
				<updated>2014-06-02T12:19:09Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|FIG-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.'''A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images,from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-2.'''Transcript analyses of rice importinas'''.&lt;br /&gt;
Total RNA samples were prepared from tissues of either dark-(etiolated leaves) or&lt;br /&gt;
light-grown (green leaves and roots) rice plants (14-days-old). For dark&lt;br /&gt;
adaptation, the light-grown plants were further grown in complete&lt;br /&gt;
darkness for the indicated hours (6, 12, and 24 days, respectively). In&lt;br /&gt;
each panel, the highest transcript levels were regarded as 100% of&lt;br /&gt;
relative expression&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176265</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176265"/>
				<updated>2014-06-02T12:18:42Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|''Semidwarf VS.'''FIG-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.'''A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images,from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-2.'''Transcript analyses of rice importinas'''.&lt;br /&gt;
Total RNA samples were prepared from tissues of either dark-(etiolated leaves) or&lt;br /&gt;
light-grown (green leaves and roots) rice plants (14-days-old). For dark&lt;br /&gt;
adaptation, the light-grown plants were further grown in complete&lt;br /&gt;
darkness for the indicated hours (6, 12, and 24 days, respectively). In&lt;br /&gt;
each panel, the highest transcript levels were regarded as 100% of&lt;br /&gt;
relative expression&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176264</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176264"/>
				<updated>2014-06-02T12:17:43Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg|right|thumb|150px|''Semidwarf VS.|right|thumb|150px|''Semidwarf VS.'''FIG-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.'''A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images,from ref&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-2.'''Transcript analyses of rice importinas'''.&lt;br /&gt;
Total RNA samples were prepared from tissues of either dark-(etiolated leaves) or&lt;br /&gt;
light-grown (green leaves and roots) rice plants (14-days-old). For dark&lt;br /&gt;
adaptation, the light-grown plants were further grown in complete&lt;br /&gt;
darkness for the indicated hours (6, 12, and 24 days, respectively). In&lt;br /&gt;
each panel, the highest transcript levels were regarded as 100% of&lt;br /&gt;
relative expression&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176263</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176263"/>
				<updated>2014-06-02T12:14:01Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
FIG-1.'''Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system'''.A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-2.'''Transcript analyses of rice importinas'''.&lt;br /&gt;
Total RNA samples were prepared from tissues of either dark-(etiolated leaves) or&lt;br /&gt;
light-grown (green leaves and roots) rice plants (14-days-old). For dark&lt;br /&gt;
adaptation, the light-grown plants were further grown in complete&lt;br /&gt;
darkness for the indicated hours (6, 12, and 24 days, respectively). In&lt;br /&gt;
each panel, the highest transcript levels were regarded as 100% of&lt;br /&gt;
relative expression&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176262</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176262"/>
				<updated>2014-06-02T12:08:52Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
&lt;br /&gt;
FIG-1.'''Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system'''.A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-2.'''Transcript analyses of rice importinas'''.&lt;br /&gt;
Total RNA samples were prepared from tissues of either dark-(etiolated leaves) or&lt;br /&gt;
light-grown (green leaves and roots) rice plants (14-days-old). For dark&lt;br /&gt;
adaptation, the light-grown plants were further grown in complete&lt;br /&gt;
darkness for the indicated hours (6, 12, and 24 days, respectively). In&lt;br /&gt;
each panel, the highest transcript levels were regarded as 100% of&lt;br /&gt;
relative expression&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176261</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176261"/>
				<updated>2014-06-02T12:08:22Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
&lt;br /&gt;
FIG-1.'''Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system'''.A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg]]&lt;br /&gt;
&lt;br /&gt;
Fig-2'''Transcript analyses of rice importinas'''.&lt;br /&gt;
Total RNA samples were prepared from tissues of either dark-(etiolated leaves) or&lt;br /&gt;
light-grown (green leaves and roots) rice plants (14-days-old). For dark&lt;br /&gt;
adaptation, the light-grown plants were further grown in complete&lt;br /&gt;
darkness for the indicated hours (6, 12, and 24 days, respectively). In&lt;br /&gt;
each panel, the highest transcript levels were regarded as 100% of&lt;br /&gt;
relative expression&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176257</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176257"/>
				<updated>2014-06-02T12:03:54Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
&lt;br /&gt;
FIG-1.'''Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system'''.A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig2 Expression of importin.jpg]]&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig3._dark_treatmeng_influence_the_expression.jpg&amp;diff=176256</id>
		<title>File:Fig3. dark treatmeng influence the expression.jpg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig3._dark_treatmeng_influence_the_expression.jpg&amp;diff=176256"/>
				<updated>2014-06-02T12:02:30Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig2_Expression_of_importin.jpg&amp;diff=176253</id>
		<title>File:Fig2 Expression of importin.jpg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig2_Expression_of_importin.jpg&amp;diff=176253"/>
				<updated>2014-06-02T11:59:59Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: &lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176250</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176250"/>
				<updated>2014-06-02T11:57:03Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
&lt;br /&gt;
FIG-1.'''Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system'''.A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4]&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176241</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176241"/>
				<updated>2014-06-02T11:52:49Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
&lt;br /&gt;
FIG-1.'''Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system'''.A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3]&amp;lt;ref name=&amp;quot;ref4&amp;quot; /&amp;gt; .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4][3].Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176239</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176239"/>
				<updated>2014-06-02T11:46:26Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
&lt;br /&gt;
FIG-1.'''Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system'''.A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)[1].The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3][4] .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4][3].Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176238</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176238"/>
				<updated>2014-06-02T11:45:37Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
&lt;br /&gt;
FIG-1.'''Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system'''.A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)[1].The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3][4] .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4][3].Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176237</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176237"/>
				<updated>2014-06-02T11:44:43Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
FIG-1.Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.A, mouse importinbalone does not dock (panels candd), whereas in combination with rice importina1,it does dock the T-GFP to the nuclear envelope (panels aandb). Such docking did not occur when Tm-GFP was used as substrate (panels andf). B, rice importin a1 mediates translocation of T-GFP (panels a and b), but not Tm-GFP (panels eandf), into the nucleus in conjunction with mouse importinband Ran-GDP. The translocation did not occur inthe absence of rice importin a1(panels candd). Panels a, c, and e, fluorescence images;panels b, d, and f, phase contrast images.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)[1].The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3][4] .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4][3].Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176235</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176235"/>
				<updated>2014-06-02T11:40:04Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)[1].The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3][4] .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4][3].Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176234</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176234"/>
				<updated>2014-06-02T11:39:34Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
[[File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg]]&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)[1].The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3][4] .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4][3].Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig1_Rice_importina1_supported_nuclear_import_of_NLS-GFP_in_vertebratein_vitroassay_system.jpg&amp;diff=176233</id>
		<title>File:Fig1 Rice importina1 supported nuclear import of NLS-GFP in vertebratein vitroassay system.jpg</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=File:Fig1_Rice_importina1_supported_nuclear_import_of_NLS-GFP_in_vertebratein_vitroassay_system.jpg&amp;diff=176233"/>
				<updated>2014-06-02T11:38:42Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: A, mouse importinbalone does
not dock (panels candd), whereas in combination with rice importina1,
it does dock the T-GFP to the nuclear envelope (panels aandb). Such
docking did not occur when Tm-GFP was used as substrate (panels e
andf). B, rice importi&lt;/p&gt;
&lt;hr /&gt;
&lt;div&gt;A, mouse importinbalone does&lt;br /&gt;
not dock (panels candd), whereas in combination with rice importina1,&lt;br /&gt;
it does dock the T-GFP to the nuclear envelope (panels aandb). Such&lt;br /&gt;
docking did not occur when Tm-GFP was used as substrate (panels e&lt;br /&gt;
andf). B, rice importin a1 mediates translocation of T-GFP (panels a&lt;br /&gt;
andb), but not Tm-GFP (panels eandf), into the nucleus in conjunction&lt;br /&gt;
with mouse importinband Ran-GDP. The translocation did not occur in&lt;br /&gt;
the absence of rice importin a1(panels candd). Panels a, c, and e,&lt;br /&gt;
fluorescence images;panels b, d, and f, phase contrast images.From &amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176232</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176232"/>
				<updated>2014-06-02T11:29:28Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;.&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)[1].The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3][4] .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4][3].Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

	<entry>
		<id>https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176231</id>
		<title>Os01g0253300</title>
		<link rel="alternate" type="text/html" href="https://ngdc.cncb.ac.cn/ricewiki/index.php?title=Os01g0253300&amp;diff=176231"/>
				<updated>2014-06-02T11:12:19Z</updated>
		
		<summary type="html">&lt;p&gt;Jujunzhou: /* 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;
Os01g0253300 encodes importin subunit alpha-1a,a member of importin family, which functions a essential role in nuclear protein import by specifically and directly binding to substrates containing either a simple or bipartite NLS motif&amp;lt;ref name=&amp;quot;ref1&amp;quot; /&amp;gt;.In vivo assay suggests that importin alpha-1a  can replace vertebrate importin a in the mediation of nuclear import of NLS substrates, implying that rice importin a1 functions as a NLS receptor in the process of nuclear import of proteins(Fig-1)&amp;lt;ref name=&amp;quot;ref2&amp;quot; /&amp;gt;,which indicates the importin family has a conserved transportation function both in plants and mammals.The importin alpha-1a also has a function in virus infection by interact with mungbean yellow mosaic virus capsid protein&amp;lt;ref name=&amp;quot;ref3&amp;quot; /&amp;gt;. （（http://ricewiki.big.ac.cn/index.php/File:Fig_1_Rice_importina1_supported_nuclear_import_of_NLS-GFP_in_vertebratein_vitroassay_system..png））&lt;br /&gt;
&lt;br /&gt;
===Expression===&lt;br /&gt;
Transcript analyses of rice importin alpha-1a by ''Chang-Jie Jiang et al'' shows importin alpha-1a is highly expressed in callus, followed by root and etiolated leaf and lowly expressed in green leaf(Fig-2)[1].The expression level of importin alpha-1a is greatly increased after darkt treatment in green leaf[Fig-3][4] .However it has a constitute expression pattern in non-photosynthetic tissues[Fig-4][3].Together,it indicates a complex regulation of the importin alpha-1a transcription.&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;
&amp;lt;references&amp;gt;&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref1&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Shoji K, Matsuki R, Baba A, Inagaki N, Ban H, Iwasaki T, Imamoto N, Yoneda Y, Deng XW, Yamamoto N. Molecular cloning of a novel importin alpha homologue from rice, by which constitutive photomorphogenic 1 (COP1) nuclear localization signal (NLS)-protein is preferentially nuclear imported. J Biol Chem. 2001 Mar 23;276(12):9322-9. Epub 2000 Dec 20.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref2&amp;quot;&amp;gt;&lt;br /&gt;
Jiang CJ, Imamoto N, Matsuki R, Yoneda Y, Yamamoto N. Functional characterization of a plant importin alpha homologue. J Biol Chem. 1998 Sep 11.&amp;lt;/ref&amp;gt;&lt;br /&gt;
&lt;br /&gt;
&amp;lt;ref name=&amp;quot;ref3&amp;quot;&amp;gt;&lt;br /&gt;
Guerra-Peraza O, Kirk D, Seltzer V, Veluthambi K, Schmit AC, Hohn T, Herzog E. Coat proteins of Rice tungro bacilliform virus and Mungbean yellow mosaic virus contain multiple nuclear-localization signals and interact with importin alpha. J Gen Virol. 2005 Jun;86(Pt 6):1815-26.&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 = Os01g0253300|&lt;br /&gt;
Description = Importin alpha-1a subunit|&lt;br /&gt;
Version = NM_001049146.1 GI:115435705 GeneID:4327117|&lt;br /&gt;
Length = 5116 bp|&lt;br /&gt;
Definition = Oryza sativa Japonica Group Os01g0253300, 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 1|Chromosome 1]]|&lt;br /&gt;
AP = Chromosome 1:8381095..8386210|&lt;br /&gt;
CDS = 8381261..8381470,8382333..8382429,8382526..8382617,8382709..8382840,8382955..8383140&amp;lt;br&amp;gt;,8383224..8383387,8383494..8383572,8384464..8384592,8385082..8385209&amp;lt;br&amp;gt;,8385328..8385691|&lt;br /&gt;
GCID = &amp;lt;gbrowseImage1&amp;gt;&lt;br /&gt;
name=NC_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&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_008394:8381095..8386210&lt;br /&gt;
source=RiceChromosome01&lt;br /&gt;
preset=GeneLocation&lt;br /&gt;
&amp;lt;/gbrowseImage2&amp;gt;|&lt;br /&gt;
CDNA = &amp;lt;cdnaseq&amp;gt;atgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctatagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataa&amp;lt;/cdnaseq&amp;gt;|&lt;br /&gt;
AA = &amp;lt;aaseq&amp;gt;MSLRPSERVEVRRNRYKVAVDAEEGRRRREDNMVEIRKSRREES                     LLKKRREGLQAQAPVPASAATGVDKKLESLPAMIGGVYSDDNNLQLEATTQFRKLLSI                     ERSPPIEEVIQSGVVPRFVQFLTREDFPQLQFEAAWALTNIASGTSENTKVVIDHGAV                     PIFVKLLGSSSDDVREQAVWALGNVAGDSPKCRDLVLANGALLPLLAQLNEHTKLSML                     RNATWTLSNFCRGKPQPSFEQTRPALPALARLIHSNDEEVLTDACWALSYLSDGTNDK                     IQAVIEAGVCPRLVELLLHPSPSVLIPALRTVGNIVTGDDAQTQCIIDHQALPCLLSL                     LTQNLKKSIKKEACWTISNITAGNKDQIQAVINAGIIGPLVNLLQTAEFDIKKEAAWA                     ISNATSGGSHDQIKYLVSEGCIKPLCDLLICPDIRIVTVCLEGLENILKVGETDKTLA                     AGDVNVFSQMIDEAEGLEKIENLQSHDNNEIYEKAVKILEAYWMDEEDDTMGATTVAA                     PQGATFDFGQGGGAAQFK&amp;lt;/aaseq&amp;gt;|&lt;br /&gt;
DNA = &amp;lt;dnaseqindica&amp;gt;167..376#1239..1335#1432..1523#1615..1746#1861..2046#2130..2293#2400..2478#3370..3498#3988..4115#4234..4597#gtgtgagctttaactccccccctttccccgcggccactagggtttctcctcctctttcctctcctcctccgccccgacgcctcgctagggtttttgcctctccctccgccgccgccgctgccgcgaggagaggagggggggagagcacccagccggcgagccagccatgtcgctgcgcccgagcgagcgggtggaggtgcggcggaaccgctacaaggtggcggtggacgccgaggaggggaggcggcggcgcgaggacaacatggtggagatccgcaagagccgccgcgaggagagcctcctcaagaagcgccgcgaggggctccaggcccaggcccccgtccccgcctccgccgcaaccggcgtcgataagaaggtgagtagtatactcctcgattcccccccgctcccctcccctcccctcccctgcctccgatgacgctatcccatcgtgtcctggatcccatattttaggtaggtgttggattggattgcactttttgagagggtttttgattcgtctgcggcatatttgtttaagtttgttattatacccgcatgtctactagcgtgcgggtgagggtaggttcctgctagatgtaggcaacacttagcaccacgtttcgatgcctcgattagtcacttgatttctgattctccttctgttgacaatattacaagtactgttagttggcacggttgcgaactcctagcgtttgaaatgtttccaggtacatgcctgctagctccagtgatctagttttagttttaggacatgtagattgtggtcttaggatcaaatcttccacggattcactgcggataattagttaggtgaccaggaactgtaataatgattgatcttcctgataatttttagtgtacatcttgctgttgtttcatcttatgttttgatagaagcatacaaatgagctgatgccatattatatctttatagctattttttgtgctatcttgaaattgagggtccagtgcaactttccttatgactgaaccttgtctttagtacatggaagcacataaatcatatagtagtgtttctggtcatgtttctagagacgtcctacattgataacgcatacatttatgttactgttaaactacctctggtttctgttctttgcaccacccctaaaagagaaggaaactgcttttaaaccctttttggggtttaatacgggaagttgagtatttgatatctctgttgaatgttgtagctcgaaagccttcctgctatgattggtggagtttattcggacgataacaaccttcagcttgaggccacaacacagttccgcaagttgctttctataggtacaaacctcttaaatgttttgggctgttaccttgtgaaaataatagttgaacaaaagttaattactaattacacccattacaatttttaattagagaggagccctccaattgaagaggttattcaatcaggcgttgttcctagattcgtgcagtttcttaccagagaggatttcccccagctacaggtgtgtgccaacacaatattattttcattatctggtaggttcaaataaaaatggatttattactgtggtgcttttgaattaaattttgtagttcgaagctgcgtgggcacttacaaacattgcatctggcacttcggagaatacaaaggttgtcattgatcatggggctgtaccaatatttgtgaagcttcttggttcttctagtgatgatgttcgtgagcaggtatccgatcatctcctgacttgtctttgtgctttctgtacttccttgatattattttgattgagtgcattgttggagttattaatgtttttacctcttgaaaaaaaattgaaggctgtatgggcattgggcaatgttgctggtgattcccctaagtgccgtgaccttgttcttgccaatggtgcattgctgcctctgctagcacagttgaatgagcacactaaactctctatgctaaggaatgcaacttggactttatcgaacttctgcagaggaaaaccacagccatcatttgaacaggtttggacaaagtttctttgtactctactgtagttagtagggaaagacagttccttaacatgatgtttattgggtgtcaatagactaggcctgctcttccagcactggcacggcttattcactccaatgatgaggaagttctcactgatgcgtgctgggctctttcatatttatctgatggcactaatgacaagatccaagccgtgattgaagctggtgtttgcccccgtcttgtggagcttctcctgtaagtgacaacattgcattacaattttctgccattttcctttagattcttatttgctactctcattataccctttttaatattttatactgtttacaacatgaagccatccatcaccttcagtgcttatacccgcactacgaactgttggaaatattgtaactggagatgacgcgcaaactcaggtattgtgttgattttttgcatctctatatctgacagattttgtatcaattgatatcaactactaagactcatgaatcttgagcttaatatttagaggttgtgttcatcacagttgatattaaattttaggcttgtggaaaatgtttaatatcatagttgatattaaatctagaggttgcatctaatgtggaaaatgttttgtaaaaactattgaaaaataaatgcacatatttgtcatatgtagatgcacatgtttggcaatttgacctactctttacgcccatcaattaaagatttgtctagtttgtgtcacttaaatacttgagatttgtcctctcacagtatcacttagatctatactctatactactttaaaaggtagtagtggtggtggcagtgaatctgccagcactacctctatcactaatgtatgggccctccatgttgggtgaaacccacatgctcaataaatttaaacgtcctccaaaagataatgtccatattgtttggtaagatctacagggaaggaatccataaaggggttgaaaagagccagtctacatattcttcaaatgatgagcatgcagtgtgcacagcatgatttttttttcattgcaacgcataggcaatttgctagtttgcctaaaaattcattgcctgctttgcagcaagtcatagctgctgtacttgtttcagccaaacttggcttttcttattgtattcttattattgtttgagttttaggagagctgagaatttttctgctatgctaaagctggtgttcatataatatgaaatatctactgtagatcacagcatgaaagttaattgcttttttgacatccatattgccatctcatcatctccccccaccccctttttttgtacagtgcatcattgatcatcaagccctcccttgcctcctaagtctgttgacacaaaatctcaagaaaagcatcaagaaagaggcttgctggactatttcaaatattactgctggtaacaaagatcagatacaggtatgtgtacagacttaaaaaatactgacatgctcatcattctactaagtcatgaaggatttgtgtagtgcatacttagtagttttaattgtgttccctctccaaaccataaacaccacacaatgttcatattccatgcaagctttcaggtcaacttttcctttcatgatgattacacttgttagcagactcatccttgttgtacaaagactgagaacatggtagtaacttaaagaaacccttatgtatgatttgctcgcaaagtatcaatggcagcctaatcactagtccaaatgttgctgctgggacctggggtcctagaaggggaggggatgggagcatatggatgattgattcatttacacggttgggaacttgtgcacttagctgcaatctttcgtccttaacctataatagcctatagctatagatcttgttgattgtgcatgttctgaaatgttcaacaatttgctgcattgactaccataggctgtcataaatgctggcattattggtcctctggtgaatctgctccaaacggcagagttcgatatcaagaaggaagctgcatgggccatctcaaatgctacttcaggcggtagccatgatcaaatcaagtatgtttactcaccttgcaccagttctattcagctttatgaaatgcaaatataaccgctttcatagtttcatgttaagcttcatttggatttgatattgtatggtttgttaaaataggtatctggtgagcgagggctgcatcaagccattgtgtgatcttcttatttgcccagatataagaatcgttacagtttgtttggagggtctcgagaacattcttaaagtaggagaaaccgacaagaccttggctgcaggtgatgtgaatgtcttttcccagatgattgatgaagcggaaggtttggaaaagattgagaacttgcagagccatgataacaatgagatctatgaaaaagctgtgaagattcttgaggcctactggatggatgaggaggatgatacaatgggagctaccacggtagctgctccccaaggtgctacttttgactttggccaaggcggtggtgctgctcaattcaaataaatacaggtactctcaatcctcaacatggtttgtgtttattgtgggttgtttccactcttaccataaatcctttctgttctggtatcattcacttgaggcaacaagtaatgatttcaaatttcctcgacagatttgaccagaggtggtaaattgtggccactgtgcggggtactgaattgttctggtggttcaataagctaaaggtttcaagggggccagtgttacattatttccctactggtcacggatatcatatcactacgtctgtaacagggattaaagctttgaagtctgcgtttttcatcaggctactactatgtagtgtttgcatcttttagtatggtgtgcaacattttgctacttgtatagcctgagtcgaagcttctgcaaagccgtcacaacacattcctgaacccgtctggttttgagtttcgtcaggagtgtgctgagttgcagtttgtccggacatgtaaaccattatgccttttaaattatatattgctagggtttgttcggttc&amp;lt;/dnaseqindica&amp;gt;|&lt;br /&gt;
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001049146.1 RefSeq:Os01g0253300]|&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 1]]&lt;br /&gt;
[[Category:Chromosome 1]]&lt;/div&gt;</summary>
		<author><name>Jujunzhou</name></author>	</entry>

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