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| − | {{JaponicaGene|
| + | Please input one-sentence summary here. |
| − | GeneName = Os10g0177200|
| + | |
| − | Description = EF-Hand type domain containing protein|
| + | ==Annotated Information== |
| − | Version = NM_001070778.1 GI:115481299 GeneID:4348196|
| + | ===Function=== |
| − | Length = 4409 bp|
| + | Rice gene Oryza sativa Drought Stress Response-1 (OsDSR-1) was one of the genes identified to be responsive to drought stress in the panicle of rice at booting and heading stages by both microarray and quantitative real-time PCR analyses. OsDSR-1 encodes a putative calcium-binding protein, and its overexpression in Arabidopsis rendered transgenic plants to produce much shorter lateral roots (LRs) than wild-type (WT) plants in the medium supplemented with abscisic acid (ABA), suggesting that OsDSR-1 may act as a positive regulator during the process of ABA inhibition of LR development.[1]OsDSR-1 may function as a calcium sensor of the signal transduction pathway controlling the LR development under high-potassium conditions.[1]Thus, the OsDSR-1 protein may participate in signal transduction, regulating the LR development of plants in response to ABA and potassium.[1] |
| − | Definition = Oryza sativa Japonica Group Os10g0177200, complete gene.|
| + | |
| − | Source = Oryza sativa Japonica Group
| + | ===Expression=== |
| | + | The data from both microarray and qRT-PCR analysesshowed that the expression levels of OsDSR-1 were up-regulated by 60- and 5-fold in the panicle of rice at booting and heading stages, respectively,under drought stress condition relative to panicles under normal growth conditions.[1]Overexpression of OsDSR-1 in Arabidopsis enhanced the inhibition effect of ABA on the LR development and promoted the LR development under high-potassium conditions.[1] |
| | + | |
| | + | ===Evolution=== |
| | + | Please input evolution information here. |
| | + | |
| | + | You can also add sub-section(s) at will. |
| | + | |
| | + | ==Labs working on this gene== |
| | + | |
| | + | Institute of Subtropical Agriculture,Chinese Academy of Sciences,Changsha, Hunan 410125, People’s Republic of China |
| | + | |
| | + | Laboratory for Agro-ecological Process in Subtropical Region,Institute of Subtropical Agriculture, CAS,Changsha, Hunan 410125, |
| | + | |
| | + | ==References== |
| | + | [1]Xu Ming Yin; Pedro S. C. F. Rocha; Man Ling Wang; Yu Xin Zhu; Luo Ye Li; Shu Feng Song; Xinjie Xia.Rice Gene OsDSR-1 Promotes Lateral Root Development in Arabidopsis Under High-Potassium Conditions,Journal of Plant Biology,2011,54(3):180-189 |
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| − | ORGANISM Oryza sativa Japonica Group
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| − | Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
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| − | Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
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| − | clade; Ehrhartoideae; Oryzeae; Oryza.
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| − | |
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| − | Chromosome = [[:category:Japonica Chromosome 10|Chromosome 10]]|
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| − | AP = Chromosome 10:5006157..5010565|
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| − | CDS = 5006501..5006737,5006845..5006970,5007079..5007297,5007462..5007758,5010044..5010325<br>|
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| − | GCID = <gbrowseImage1>
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| − | name=NC_008403:5006157..5010565
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| − | source=RiceChromosome10
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| − | preset=GeneLocation
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| − | </gbrowseImage1>|
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| − | GSID = <gbrowseImage2>
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| − | name=NC_008403:5006157..5010565
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| − | source=RiceChromosome10
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| − | preset=GeneLocation
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| − | </gbrowseImage2>|
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| − | CDNA = <cdnaseq>atggcgtcgggcaagatggagaacggccagcagcagcagcagcaggaggtgaggaggaggaggaacggcgaggtggtggtggacgggtcggagatcctgcagctggtggagaacaaggaggcgtttggtaagttcgtggagcagaagttcaggctgctcgacgccgacggcgacgggaggctgtcggtgagggagctccagccggccgtcgctgacatcggcgccgccatcgggttgccggcgagggggtcgtcggcgcaggccgaccacatctactctgaggttcttaacgagttcacaaaagggaagaaagaatcggtgagcaagtcagagttccagcgtgtcctctctgacatacttcttggcatggcggctggactaaagagggaccccattgtgatcttgaggattaacggtgaagatttgaatgaatttgttgagagcccaaggtacgaaccggagatggctgccatattttcgcaagttgaatcaggaaattcaaccttgcagcagtgcatgctagctgctattcgacaactgacggtcgaccacggcatgccaccggcttcagattcatgggttatggagaatatcatagaacctgcattgcaagaactccatggtgataacctggagcaacctgtcactcaagaggtcttcttccaggaattcagaaagttcttggcaatcctcacgcagcgactccaagggcaccctgtgattgtagcacataccgagaacacctttgatgggaatggtatcaagaagctgctgtcaaacaagctcgaattagataagctgttggattgtgtttggagaggcgtaccgaaagaaaaagatagaacagcgaagcagtacattcgggttgcgttcgataggatggctgactccataaatctaccaccatatggagctgttgaacaggtagatgctgtggtcgatgaggcgttcaagatggcgaaagccgaggacgggaaggcggtggatgaaacggagttcaagaaattgctcactgagatccttggggcagtgatgctgcagctagatggcaatccaatatcggtttcgaccaacagtgtactccatgagccaatgtccacttcttccaccctgctttcgccatcgccgccgtcgccaatggtgtcatcaccgagtgaatag</cdnaseq>|
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| − | AA = <aaseq>MASGKMENGQQQQQQEVRRRRNGEVVVDGSEILQLVENKEAFGK FVEQKFRLLDADGDGRLSVRELQPAVADIGAAIGLPARGSSAQADHIYSEVLNEFTKG KKESVSKSEFQRVLSDILLGMAAGLKRDPIVILRINGEDLNEFVESPRYEPEMAAIFS QVESGNSTLQQCMLAAIRQLTVDHGMPPASDSWVMENIIEPALQELHGDNLEQPVTQE VFFQEFRKFLAILTQRLQGHPVIVAHTENTFDGNGIKKLLSNKLELDKLLDCVWRGVP KEKDRTAKQYIRVAFDRMADSINLPPYGAVEQVDAVVDEAFKMAKAEDGKAVDETEFK KLLTEILGAVMLQLDGNPISVSTNSVLHEPMSTSSTLLSPSPPSPMVSSPSE</aaseq>|
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| − | DNA = <dnaseqindica>3829..4065#3596..3721#3269..3487#2808..3104#241..522#acttcagctgcaacggagaaatcgacgcaaaaacaaaccgcagaaagaaagaaaaaaacaagaaaggcaagaaagctactggttttcagctcgatcatcttgtgattagctcacacactttttgccacctttttgcgagagactgatcgaagtatactcttcgtctaggttgtgttcacggggagcttggtgccattgctgcaagttggggaactttttgggttgtagaaaaggaagctgatggcgtcgggcaagatggagaacggccagcagcagcagcagcaggaggtgaggaggaggaggaacggcgaggtggtggtggacgggtcggagatcctgcagctggtggagaacaaggaggcgtttggtaagttcgtggagcagaagttcaggctgctcgacgccgacggcgacgggaggctgtcggtgagggagctccagccggccgtcgctgacatcggcgccgccatcgggttgccggcgagggggtcgtcggcgcaggccgaccacatctactctgaggtagtaattccttgtatatcctgatgttcatttatttctagagggaaatacatcctgatgtgtgtcagtgtgtcatgaagttgacgctacctacagctgttaactgtcttaatgtctttaccgatttggtcgatttttgtcatgttcatgttcatgtgtcacgaacgtattttagaattaagataggtttatatatatatatatttcatatttcaaaatcttttagaagatacaacagatttcttgtaattaatggtacatatactaactccgttttgctgttgattttggaaacacatactacctccgttttgcggttgattttagaaactcttgtctaagtatcaatttatctttttattttttcactaaagataaaataagcttgactcatgcattttttttcatattttcgactaatctatttgttttgtcattaaagataatataagcatgactcacgatcgtaaaatttgtcaactttttttagcatttttatttatttattaaataaataaatcttgtatgagagtacaaacaagagggaagtgtaggcgaaataaactaataaggagtgaggataaagagagctattcatctacaaattctagatgttcagtagaacattgttaatggaaatacaatggtgagaaaaaaaatagatagaaaaacttaaaaatgtttattttcatatttgtgactaatggtcgacaaaggttatgtacaaaagtcaacattacaatatatttaaaaagggagcaaacgttatatatcaaagtcattgttatcatatatctaaaaatggagggagtagtttaattataattgttaaagtttgattttctcatggcattcaaagtcagccagcgtataataaaattggttaaaaggaagcgatcaaaatgggggagagtgtttctcttttcttaaacaaggagatagcatattgtacatacgggctcattattttgattctactaaccgttgatgcttttcactaagcattactccttcagttccaaaatataagggattttgatttgataatacgcatcctagtaatacgaatgtagatagtccagattcgtagtattaggatatgtctatccaaccaaaattgtttgaattttgtgacggagggagtacattttgggcatttctatttttttaaaataatggaaaaccaaaaatactggttggatacttagaaccgacacctatgtcaattggcataggtgacgccaaattggtgtcggttgagaaaccggcacttataattaagtggtttccaaccagcatctatatggtgctctgtaatagttattatagcgttatgcctcttcaaggacacgaataatgcattaaaaaaatcagacacttcttttatgtttattttgttcagtttagtaatatgatttggctcatctggccatgacagaaacgaatatgaagttttatggtggctctaggaagcaaattaagcaattattcagaaaaaaagttataatctgacagtacaaaaaaatgatgcactagatttcatggaaaatggaaaagatgtgttttcactttacgggtttcattacagtatttagtacattacagatgaaaaggttttatggactcccataaaaaagggtttttttggacttgttctttttgaaattgtctgaagaatttcttttggaaatgaatacactcagggtgaatatagaagaaagtattttgagattttcctataattccactagagtatgagtattgctttgacctgccaaatggaagaaactggaacgtgcctaaattaaccaggaaaacgtcacattctaatgatctagccccaagacttatcagttgacagaacaagataatcttactgaaagtgactgctcttgtgtggccaaagtcatcatccttttcaaattcccatccaatttgtctagcatgttctaggtgtctacctcctgaacattctgatatcgctgtaacttatcattccggtttcttagacacatcttttcgaaagatgatgcctataacgatttcttagataaatattagttccttttgacacatgttctcttgcttactcttgacagtgacaaaaataatggtttactggattttcttccagagaggtgtctgttcatgagctctacttccattatacattgtcagtaacttgcagtaaaattttaatcacatttcctggataatcttgaaccaaaacatccgataattactgttgtctaattcatctcatggctcatggaattaacctgcaggttcttaacgagttcacaaaagggaagaaagaatcggtgagcaagtcagagttccagcgtgtcctctctgacatacttcttggcatggcggctggactaaagagggaccccattgtgatcttgaggattaacggtgaagatttgaatgaatttgttgagagcccaaggtacgaaccggagatggctgccatattttcgcaagttgaatcaggaaattcaaccttgcagcagtgcatgctagctgctattcgacaactgacggtcgaccacggcatgccaccggcttcagattcatgggtaattgccaatgaatgtgttacataattcagagcagaaaacgaaatcatttcatacagggtaacaaatataacagagtaacagttattctgttaccgagactgacaaaacagagtggagatgaggttaagagagaaattagtaaggttggctgttttttacaggttatggagaatatcatagaacctgcattgcaagaactccatggtgataacctggagcaacctgtcactcaagaggtcttcttccaggaattcagaaagttcttggcaatcctcacgcagcgactccaagggcaccctgtgattgtagcacataccgagaacacctttgatgggaatggtatcaagaagctgctgtcaaacaagctcgaattagataaggtacggtattgtttctatcctcgatgtcatcatcttcccataaaaatatactcctatatattagtgttacttcataccgatctacttatactatcttttgtgatcaagctgttggattgtgtttggagaggcgtaccgaaagaaaaagatagaacagcgaagcagtacattcgggttgcgttcgataggatggctgactccataaatctaccaccatatggagctgttgaacaggtagaatttcatttgctaccaatcatttcatcagtaattttcaggaaaaccagccaaaacacattgtatgttcagatctaaggcttatggtaagttggtaactgcaggtagatgctgtggtcgatgaggcgttcaagatggcgaaagccgaggacgggaaggcggtggatgaaacggagttcaagaaattgctcactgagatccttggggcagtgatgctgcagctagatggcaatccaatatcggtttcgaccaacagtgtactccatgagccaatgtccacttcttccaccctgctttcgccatcgccgccgtcgccaatggtgtcatcaccgagtgaatagaagcaagatggaaggaagctgatcatagaatggacagtggagaatataatttccactggtggtaacagtaactgcaatataatgctggttttcttctgatcaatgaacaaactgcagtaacttgatagttgccatgtaactggagacctggtgcaaatatgtttgtgttggtgtttgtaactacgttctaagtgtttagtgtcggaataataaggcttctaattaagccagcagttgaacaacggggaataatttatttcaagcttttgttttgggtgcagcagatgcttggaaatggcaagcttggggaccaataatggtatgataaaactatgttagtaact</dnaseqindica>|
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| − | Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001070778.1 RefSeq:Os10g0177200]|
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| − | }}
| |
| | [[Category:Genes]] | | [[Category:Genes]] |
| | [[Category:Japonica mRNA]] | | [[Category:Japonica mRNA]] |
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Line 28: |
| | [[Category:Japonica Chromosome 10]] | | [[Category:Japonica Chromosome 10]] |
| | [[Category:Chromosome 10]] | | [[Category:Chromosome 10]] |
| | + | == Structured Information == |
Please input one-sentence summary here.
Annotated Information
Function
Rice gene Oryza sativa Drought Stress Response-1 (OsDSR-1) was one of the genes identified to be responsive to drought stress in the panicle of rice at booting and heading stages by both microarray and quantitative real-time PCR analyses. OsDSR-1 encodes a putative calcium-binding protein, and its overexpression in Arabidopsis rendered transgenic plants to produce much shorter lateral roots (LRs) than wild-type (WT) plants in the medium supplemented with abscisic acid (ABA), suggesting that OsDSR-1 may act as a positive regulator during the process of ABA inhibition of LR development.[1]OsDSR-1 may function as a calcium sensor of the signal transduction pathway controlling the LR development under high-potassium conditions.[1]Thus, the OsDSR-1 protein may participate in signal transduction, regulating the LR development of plants in response to ABA and potassium.[1]
Expression
The data from both microarray and qRT-PCR analysesshowed that the expression levels of OsDSR-1 were up-regulated by 60- and 5-fold in the panicle of rice at booting and heading stages, respectively,under drought stress condition relative to panicles under normal growth conditions.[1]Overexpression of OsDSR-1 in Arabidopsis enhanced the inhibition effect of ABA on the LR development and promoted the LR development under high-potassium conditions.[1]
Evolution
Please input evolution information here.
You can also add sub-section(s) at will.
Labs working on this gene
Institute of Subtropical Agriculture,Chinese Academy of Sciences,Changsha, Hunan 410125, People’s Republic of China
Laboratory for Agro-ecological Process in Subtropical Region,Institute of Subtropical Agriculture, CAS,Changsha, Hunan 410125,
References
[1]Xu Ming Yin; Pedro S. C. F. Rocha; Man Ling Wang; Yu Xin Zhu; Luo Ye Li; Shu Feng Song; Xinjie Xia.Rice Gene OsDSR-1 Promotes Lateral Root Development in Arabidopsis Under High-Potassium Conditions,Journal of Plant Biology,2011,54(3):180-189
Structured Information