Difference between revisions of "Os04g0659300"
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===Function=== | ===Function=== | ||
Please input function information here. | Please input function information here. | ||
| + | The apoplast of plant cells, which carries out multiple functions in plant metabolism and signaling, is not only a barrier but also the linker between the environment and the protoplast. To investigate the role of apoplastic proteins in the salt stress response, 10-d-old rice (Oryza sativa) plants were treated with 200 mM NaCl for 1, 3, or 6 h, and the soluble apoplast proteins were extracted for differential analysis compared with untreated controls using two-dimensional electrophoresis. Ten protein spots that increased or decreased significantly in abundance were identified by mass spectrometry. These proteins included some well-known biotic and abiotic stress-related proteins. Among them, an apoplastic protein, with extracellular domain-like cysteine-rich motifs (DUF26), O. sativa root meander curling (OsRMC), has shown drastically increased abundance in response to salt stress during the initial phase. OsRMC RNA interference transgenic rice has been generated to assess the function of OsRMC in the salt stress response. The results show that knocking down the expression level of OsRMC in transgenic rice led to insensitive seed germination, enhanced growth inhibition, and improved salt stress tolerance to NaCl than in untransgenic plants. These results indicate that plant apoplastic proteins may have important roles in the plant salt stress response. | ||
===Expression=== | ===Expression=== | ||
Revision as of 16:16, 26 June 2014
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Contents
Annotated Information
Function
Please input function information here. The apoplast of plant cells, which carries out multiple functions in plant metabolism and signaling, is not only a barrier but also the linker between the environment and the protoplast. To investigate the role of apoplastic proteins in the salt stress response, 10-d-old rice (Oryza sativa) plants were treated with 200 mM NaCl for 1, 3, or 6 h, and the soluble apoplast proteins were extracted for differential analysis compared with untreated controls using two-dimensional electrophoresis. Ten protein spots that increased or decreased significantly in abundance were identified by mass spectrometry. These proteins included some well-known biotic and abiotic stress-related proteins. Among them, an apoplastic protein, with extracellular domain-like cysteine-rich motifs (DUF26), O. sativa root meander curling (OsRMC), has shown drastically increased abundance in response to salt stress during the initial phase. OsRMC RNA interference transgenic rice has been generated to assess the function of OsRMC in the salt stress response. The results show that knocking down the expression level of OsRMC in transgenic rice led to insensitive seed germination, enhanced growth inhibition, and improved salt stress tolerance to NaCl than in untransgenic plants. These results indicate that plant apoplastic proteins may have important roles in the plant salt stress response.
Expression
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Evolution
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Labs working on this gene
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References
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Structured Information
| Gene Name |
Os04g0659300 |
|---|---|
| Description |
Protein of unknown function DUF26 domain containing protein |
| Version |
NM_001060670.2 GI:297603499 GeneID:4337274 |
| Length |
984 bp |
| Definition |
Oryza sativa Japonica Group Os04g0659300, 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 4:34039839..34040822 |
| Sequence Coding Region |
34039882..34040658 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008397:34039839..34040822 source=RiceChromosome04 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008397:34039839..34040822 source=RiceChromosome04 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atggcgcggtgcactttgctcgttctcctcgtggcggcggcggtggcggtcgtcccgctcgccgccggccagccgtgggctacctgcggcgacggcacgtacgagcaggggagcgcctacgagaacaacctcctgaacctggccctcaccctccgcgacggcgcctcctcccaggagatcctcttctccacgggctccaacggcgccgccccgaacaccgtctacggcctcctcctctgccgcggcgacatctcccgcgccgcctgctacgactgcggcaccagcgtgtggagggacgccgggagcgcgtgccgccgcgccaaggacgtcgccctcgtctacaacgagtgctacgcccgcctctccgacaaggacgacttcctcgccgacaaggtggggccggggcagctgacgaccctcatgagcagcaccaacatcagcagcggcgccgacgtcgccgcctacgaccgcgcggtgacgcggctgctggcggccaccgcggagtacgcggcgggggacatcgcgaggaagctgttcgcgacggggcagcgggtgggcgccgacccggggttccccaacctgtacgcgacggcgcagtgcgcgttcgacatcacgctggaggcgtgccgcggctgcctcgagggcctcgtcgccaggtggtgggacacgttcccggcgaacgtcgacggcgccaggatcgccgggccgaggtgcctcctcaggtcggaggtgtacccgttctacaccggcgccccgatggtggtgctgcgtgagtag</cdnaseq> |
| Protein Sequence |
<aaseq>MARCTLLVLLVAAAVAVVPLAAGQPWATCGDGTYEQGSAYENNL LNLALTLRDGASSQEILFSTGSNGAAPNTVYGLLLCRGDISRAACYDCGTSVWRDAGS ACRRAKDVALVYNECYARLSDKDDFLADKVGPGQLTTLMSSTNISSGADVAAYDRAVT RLLAATAEYAAGDIARKLFATGQRVGADPGFPNLYATAQCAFDITLEACRGCLEGLVA RWWDTFPANVDGARIAGPRCLLRSEVYPFYTGAPMVVLRE</aaseq> |
| Gene Sequence |
<dnaseqindica>44..820#cgctaatccatcaacctatagcttaacgatcactgccattgcaatggcgcggtgcactttgctcgttctcctcgtggcggcggcggtggcggtcgtcccgctcgccgccggccagccgtgggctacctgcggcgacggcacgtacgagcaggggagcgcctacgagaacaacctcctgaacctggccctcaccctccgcgacggcgcctcctcccaggagatcctcttctccacgggctccaacggcgccgccccgaacaccgtctacggcctcctcctctgccgcggcgacatctcccgcgccgcctgctacgactgcggcaccagcgtgtggagggacgccgggagcgcgtgccgccgcgccaaggacgtcgccctcgtctacaacgagtgctacgcccgcctctccgacaaggacgacttcctcgccgacaaggtggggccggggcagctgacgaccctcatgagcagcaccaacatcagcagcggcgccgacgtcgccgcctacgaccgcgcggtgacgcggctgctggcggccaccgcggagtacgcggcgggggacatcgcgaggaagctgttcgcgacggggcagcgggtgggcgccgacccggggttccccaacctgtacgcgacggcgcagtgcgcgttcgacatcacgctggaggcgtgccgcggctgcctcgagggcctcgtcgccaggtggtgggacacgttcccggcgaacgtcgacggcgccaggatcgccgggccgaggtgcctcctcaggtcggaggtgtacccgttctacaccggcgccccgatggtggtgctgcgtgagtaggcgctggccatgcgtgaagctagaataaaatggcacaaattaagagtgttccaccagaataaatgtattgtatactgaataaacctgcatgcaggatatctatctaagctgtaaccggattatactattgtactatcaaataaaaaaaagtgtctatatgatta</dnaseqindica> |
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