Os03g0688300
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Contents
Annotated Information
Function
This gene also know as OsCPK9 which is one of calcium-dependent protein kinase genes. It's a member of rice CDPK gene family. OsCPK9 transcription was induced by abscisic acid (ABA), PEG6000, and NaCl treatments. OsCPK9 plays a positive role in drought stress tolerance and spikelet fertility. Physiological analyses revealed that OsCPK9 improves drought stress tolerance by enhancing stomatal closure and by improving the osmotic adjustment ability of the plant. It also improves pollen viability, thereby increasing spikelet fertility[1]. And expression of OsCPK9 was elevated in seedlings infected by rice blast, indicating that this gene plays an important role in signaling in response to rice blast treatment[2].
Expression
Expression of OsCPK9 increased in response to rice blast treatment[2].
OsCPK9 expression was increased after 12–24 h of both avirulent and virulent rice blast treatment. These results suggest that OsCPK9 is involved in decoding the rice blast-induced Ca2+ signal pathway[2].
Evolution
OsCPK9 have four splicing sites, respectively , fewer than the number typical for CDPKs. This finding suggests that intron loss events have occurred within these rice CDPK genes during evolution[2].
==Knowledge Extension
OsCPK9 gene had GC-rich sequences (66.8%) throughout their coding region[2].
Overexpression of the AtbZIP60 gene in transgenic cell lines improved salt, drought, and cold stress tolerances by regulating expression of Ca(2+)-dependent protein kinase genes like OsCPK9 [3].
References
<references> <ref name="ref1">Shuya Wei, Wei Hu, et al. (2014) A rice calcium-dependent protein kinase OsCPK9 positively regulates drought stress tolerance and spikelet fertility. BMC Plant Biol 14(1), 133. <ref name="ref2">Takayuki Asano, Naoki Tanaka, Guangxiao Yang, Nagao Hayashi, and Setsuko Komatsu. (2005) Genome-wide identification of the rice calcium-dependent protein kinase and its closely related kinase gene families: comprehensive analysis of the CDPKs gene family in rice. Plant Cell Physiol 46(2). <ref name="ref3">Wei Tang and Michael Page. (2013) Transcription factor AtbZIP60 regulates expression of Ca2+ -dependent protein kinase genes in transgenic cells. Mol Biol Rep 40(3), 2723–2732.
Structured Information
| Gene Name |
Os03g0688300 |
|---|---|
| Description |
Similar to Calcium-dependent protein kinase |
| Version |
NM_001057479.1 GI:115454686 GeneID:4333767 |
| Length |
5334 bp |
| Definition |
Oryza sativa Japonica Group Os03g0688300, complete gene. |
| Source |
Oryza sativa Japonica Group ORGANISM Oryza sativa Japonica Group
Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
clade; Ehrhartoideae; Oryzeae; Oryza.
|
| Chromosome | |
| Location |
Chromosome 3:28227842..28233175 |
| Sequence Coding Region |
28227980..28228745,28231487..28231899,28231987..28232154,28232224..28232454,28232731..28232877 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008396:28227842..28233175 source=RiceChromosome03 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008396:28227842..28233175 source=RiceChromosome03 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atgggcaacacgtgctgcgtcgctccggctaccaccgatgaggtgggcgcgccgccgcgagatcatcatcacgcggccaagaagtcgccggcgccgtcggcgacgacgacgacggcgacgaggcagaggcatggccaagaacccaagcccaagcccaagcccagggcgagggcgaagcccaacccgtacgactgggcgccgccgcgggtgctgccggcgaggggcggcgccgccgcgtccgcggtgcgcgtgctggagggcgtggtgccgcaccacccgcggctgcgcgtcacggacaagtaccagctcggccgcgagctggggcgcggcgagttcggggtgacgcacctcgccacggaccgcgcgacgcgggagcggctggcgtgcaagtccatcccgaagcgccgcctccgcaccgccgtggacgtcgccgacgtgcggcgcgaggtggccatcatggcgtcgctcccggaccacccggcgctggtgcgcctccgcgccgcctacgaggacgccgacgcggtgcacctggtgatggagctctgcgacggcggcgagctgttcgaccggatcgtggcgaggggccggtacacggagcgcgccgcggccgccgcggcgcggacggtggcggaggtggtgcgcgcgtgccacgcccacggcgtgatgcaccgcgacctcaagccggagaacttcctctacgccggcaaggccgaggacgcgcagctcaaggccatcgatttcggcctctccgtcttcttccgacctggggagaggttcagggagatcgtggggagcccgtactacatggcgccggaggtgctccggcgagactacggcccggaggtggacatctggtccgccggcgtcatcctctacatcctcctgtgcggcgtcccgccgttctgggccgagacggagcagggcgtggcgcgcgccatcctccgcggcgccgccgacttcgaccgggagccatggccgcgcatctcccgcgccgccaagtccctcgtccgccagatgctcgacgtggacccgcgccgccgccccacggcgcagcaggtgctcgaccacccctggctccaccacgccgcccgcgcccccaacgtccccctcggcgacgtcgtccgcgcccgcctcaagcagttctccctcatgaaccgcctcaagaagaaggccatgcgggtgatcgcggaacacctgtcggtagaggaggtggaggtgatcaaggacatgttcgcgctcatggacaccgacaacaacggcagggtcacgctccaggagctcaaggacggcctcaccaaggtcggctccaagctcgccgagcccgagatggagcttctcatggaggccgcggatgtggatggcaatgggtacctggactacggcgagttcgtggcggtgaccatccacctgcagcgcctctccaacgacaaccacctccgcacggccttcctcttcttcgacaaggacggcagcggctacatcgaccgcgccgagctcgccgacgccctcgccgacgactccggccacgccgacgacgccgtgctcgaccacatccttagagaagtcgacaccgacaaggatgggcggatcagctacgaggagttcgtggcgatgatgaaatccgggacggattggaggaaggcgtcgcggcaatactcgagggagcggttcaagacgctcagcaacagcctcatcaaggacggctcgatcaccatggcgcgctag</cdnaseq> |
| Protein Sequence |
<aaseq>MGNTCCVAPATTDEVGAPPRDHHHAAKKSPAPSATTTTATRQRH GQEPKPKPKPRARAKPNPYDWAPPRVLPARGGAAASAVRVLEGVVPHHPRLRVTDKYQ LGRELGRGEFGVTHLATDRATRERLACKSIPKRRLRTAVDVADVRREVAIMASLPDHP ALVRLRAAYEDADAVHLVMELCDGGELFDRIVARGRYTERAAAAAARTVAEVVRACHA HGVMHRDLKPENFLYAGKAEDAQLKAIDFGLSVFFRPGERFREIVGSPYYMAPEVLRR DYGPEVDIWSAGVILYILLCGVPPFWAETEQGVARAILRGAADFDREPWPRISRAAKS LVRQMLDVDPRRRPTAQQVLDHPWLHHAARAPNVPLGDVVRARLKQFSLMNRLKKKAM RVIAEHLSVEEVEVIKDMFALMDTDNNGRVTLQELKDGLTKVGSKLAEPEMELLMEAA DVDGNGYLDYGEFVAVTIHLQRLSNDNHLRTAFLFFDKDGSGYIDRAELADALADDSG HADDAVLDHILREVDTDKDGRISYEEFVAMMKSGTDWRKASRQYSRERFKTLSNSLIK DGSITMAR</aaseq> |
| Gene Sequence |
<dnaseqindica>139..904#3646..4058#4146..4313#4383..4613#4890..5036#atgcttcttgttcatccaagctaagctgagctgagctgagatgggcgagagatgtagaagtagatagaattaagctagctagagaggtagatatatagctgtggtgaggaagtttccagaaggttctagaagatcgccatgggcaacacgtgctgcgtcgctccggctaccaccgatgaggtgggcgcgccgccgcgagatcatcatcacgcggccaagaagtcgccggcgccgtcggcgacgacgacgacggcgacgaggcagaggcatggccaagaacccaagcccaagcccaagcccagggcgagggcgaagcccaacccgtacgactgggcgccgccgcgggtgctgccggcgaggggcggcgccgccgcgtccgcggtgcgcgtgctggagggcgtggtgccgcaccacccgcggctgcgcgtcacggacaagtaccagctcggccgcgagctggggcgcggcgagttcggggtgacgcacctcgccacggaccgcgcgacgcgggagcggctggcgtgcaagtccatcccgaagcgccgcctccgcaccgccgtggacgtcgccgacgtgcggcgcgaggtggccatcatggcgtcgctcccggaccacccggcgctggtgcgcctccgcgccgcctacgaggacgccgacgcggtgcacctggtgatggagctctgcgacggcggcgagctgttcgaccggatcgtggcgaggggccggtacacggagcgcgccgcggccgccgcggcgcggacggtggcggaggtggtgcgcgcgtgccacgcccacggcgtgatgcaccgcgacctcaagccggagaacttcctctacgccggcaaggccgaggacgcgcagctcaaggccatcgatttcggcctctccgtcttcttccgacctggtcagcttcttcccttcttcttcctctgcaatgcatgcacgcttgaacaaaacttttttttttttgcctctcttccccatttaatttttttagaacatattctcaaaattttttagtggtagtagatattctcaaaaatcccattcaaagaatttttttagagattttcagtacctcaaaaaatcccattgcaagaaattttggagattttcactatatgaaaaattgatctgcaaataaatttggagcttttcacaataatttttcacaatctcaaagattgaaatgtaaataaattgggagctttttcaaaatatcaaagatgaaattgcaaaaaaaagaggatattttttccttcacaatgtcaaaagatctaattgcatgaaaacagagattttccagaaatgctcaaactagttttgcagttgtttttttgggttgcacgtggattctttgagaattataatactataagcacagttgggaatagttaattagtcccctgctacaacttttcaaaagatcccttctgttataaaaggtgaaattttatcccatttcttaaacacgttatcttttcacgggtgccaaatcataaagcacaaaacacccccaaatgatcaatgggtaggtgggagtacatataaaacctcagtagagccttttatgtttttatatatgaaaaacatatctttaagagaaattttatggtacttaaaagaggtgctctctccaatcatttgtacttgacgttggaagaaccaatcgtaattctgttaacgtcaaatataaatgaaccgcgagggagggagaatcaaattttgcagagagagataccgaaaatacgatgcctcataaaaaaccgcaaaatcactcgtattaaaaaagaatcataaacatcaataagaacacattatttctaacaaaatgtgaacccatagttggtcggctaaccaacccaaatttgaccccctcccttagtaaatttggtgtgcagtgaaaatagaacaggtcggcgtttcggtgccctcttgcgcctgaatttcactttcaccggtggaagaaattaagaacagtctgcatttgaaatggcagctgatcgtgacggtgagccgaaaaaccgagccaattctgcccgaaattttcagagaaaaagtctgtggatgctgggtcatcagatgatgctactcctctctgcagacacgcatcacgccgtcccctgtgtttagcttactcggtcagtgagttcgtcaacctaccacaaagctgaatttcttttttaattaacgatagtagaaaagaatataaaagtataacctgaatatttttattttgaaaaaaaatggattggaaaaccatgtgtttatatctagaccgaatatacgcagccacgaaaaacagtgattaaaaaagagaacaaaatcaccaccacacgccgagttttttttttccatagttgcgtccagactgttaagaggtcgtggtcggcagcagattgctgtcaagatcttaattaagataagcaagatcggtgtcaaggatcttacgataatagacgactcgctcttgttgagtcctcaggggagaaaaaaactgtcactcttgttcttaattattgttcctctttgatgttgcatggccgaatagattgagctggacagatcatttcagaatacagtcaactcgtaccgttattgcttggaatgtaagaatggtggtaaaacatatgaatagcaaataagcagagttttaatataaatacatttgcataacaaaggatccgtataataaaagaagtacaagaattggatcagagagacgggggttgttttaaccttactccaaaatattaatgcattgagcagtccaaaggaatttcatgagatttttagatctccaatcctttcctcaaataaatggaaagatttgaattctacaaaactccttgacaagtcctttgttataaacagaggctctccattttgcacattcatgttcaagcaaaaaaaaaagacattttgcacattgacatgatctttcaaacataatattgaccatcactttgcatcataatatatacagtgataaaattccagtgtattttgcttatccatcttgaacgtttaaaatggatttttatttataccttaagtctaaatgcatatctaaagcatcaaaatatggggttaagtatacatttgtggataaatttgtactaaccacagtacaatatttgtgacgagatagagcctagtgagagtgtgactctgagatgggccggcctacatgcaatctgtgcagataggcccagtagatttcatacggcccatgtttcaaatccagccttttcttcaacctcaccaaaaaactagttatacatttgttgtcaaagatgtaattatagcacaattgtgttgtaactatattataatttagtatcatgtaacttgtaagtaactttcaaaaatcaataggcgacatgttatttccatgaaatggaggtaatggaaccgaattcccttacatgcgtgtgcaatgtgattttttcttatctaccttgcatgaattttaaagcaaaatcgaacggtttaaaagtatgtgaaagttacgtacaaattacattatagttacatgtgtgattacacatatttacatttgttaaatttttatgagaaaatttgccgataaatatacagaaaaaaaagagaaaaaaaactgacttggcaagtgaaaggaaacaggggagaggttcagggagatcgtggggagcccgtactacatggcgccggaggtgctccggcgagactacggcccggaggtggacatctggtccgccggcgtcatcctctacatcctcctgtgcggcgtcccgccgttctgggccgagacggagcagggcgtggcgcgcgccatcctccgcggcgccgccgacttcgaccgggagccatggccgcgcatctcccgcgccgccaagtccctcgtccgccagatgctcgacgtggacccgcgccgccgccccacggcgcagcaggtgctcgaccacccctggctccaccacgccgcccgcgcccccaacgtccccctcggcgacgtcgtccgcgcccgcctcaagcagttctccctcatgaaccgcctcaagaagaaggccatgcgggtacgtggcgtgcgtgctctgctcttgatgtcgtctccggcgacggcgagcccgtttctgtgtctgaccgcccagcgatgcacgcaggtgatcgcggaacacctgtcggtagaggaggtggaggtgatcaaggacatgttcgcgctcatggacaccgacaacaacggcagggtcacgctccaggagctcaaggacggcctcaccaaggtcggctccaagctcgccgagcccgagatggagcttctcatggaggccgtaagcttctttacccttcttcaagatagcaatggcggcaatggcgagttcttgattttgcattggcaggcggatgtggatggcaatgggtacctggactacggcgagttcgtggcggtgaccatccacctgcagcgcctctccaacgacaaccacctccgcacggccttcctcttcttcgacaaggacggcagcggctacatcgaccgcgccgagctcgccgacgccctcgccgacgactccggccacgccgacgacgccgtgctcgaccacatccttagagaagtcgacaccgacaaggtaaacacacacgcttcccttccactactccatttgcaacaaaaatgttcttcaattcagctctatctcttttgaagcctagccagatagtttgaactccactcagaattagagtgaaattagttgaagcgctcttacaaaatgaactggagaaatgtaactgggtttagcctcctccacaactccacttcaaactcggctctcggagttaaatttaggcgttagagctctcccaaataaactctgaaactgatcaatctctgaatttgcatgcaggatgggcggatcagctacgaggagttcgtggcgatgatgaaatccgggacggattggaggaaggcgtcgcggcaatactcgagggagcggttcaagacgctcagcaacagcctcatcaaggacggctcgatcaccatggcgcgctagctagctcgacgaattcagtcgattcaggcttgagaattcattgagaatatgaggtcgatgcaatgctcgaattttttttttttgatgcatacttcattcgaatttgaatttgggttttccatttcgtccaatttttcttttgtacaatctactgtagatcgatcggtcgtctatctgaaccttctttgtgtaggatgtgttagtgaacgctgggattgtttcagcattcgttgtacgtgtttgaaattgcgtcgggtgtaattatgtggtaacggtggtaatcaagcaaatttacagc</dnaseqindica> 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