Difference between revisions of "Os01g0165000"
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==Annotated Information== | ==Annotated Information== | ||
===Function=== | ===Function=== | ||
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| + | Our results show that the LcSAIN1 gene might play an important positive modulation role in increasing the expression of transcription factors (MYB2 and DREB2A) and functional genes (P5CS and RAB18) in transgenic plants under salt stress and that it augments stress tolerance through the accumulation of compatible solutes (proline and soluble sugar) and the alleviation of changes in reactive oxygen species<ref name="pmid:23695503"/>. | ||
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| + | The dehydration responsive element binding (DREB) transcription factors play an important role in regulating stress-related genes<ref name="pmid:24376625"/>. | ||
| + | |||
| + | The DREB and CBF transcription factors play a critical role in plant development and abiotic stress responses and, therefore, represent attractive targets for a molecular plant breeding approach<ref name="pmid:22078375"/>. | ||
| + | |||
| + | MYB-type transcription factors play a diverse role in plant development and response to abiotic stress<ref name="pmid:22301384"/>. | ||
| + | |||
| + | OsDREB2A, a member of the DREBP subfamily of AP2/ERF transcription factors in rice (Oryza sativa), is involved in the abiotic stress response<ref name="pmid:24376625"/>. | ||
| + | |||
| + | Induced over-expression of the transcription factor OsDREB2A improves drought tolerance in rice<ref name="pmid:22078375"/>. | ||
| + | |||
| + | These findings suggest that OsMYB2 encodes a stress-responsive MYB transcription factor that plays a regulatory role in tolerance of rice to salt, cold, and dehydration stress<ref name="pmid:22301384"/>. | ||
| + | |||
| + | ZFP179 encodes a 17.95 kDa protein with two C2H2-type zinc finger motifs having transcriptional activation activity<ref name="pmid:20460361"/>. | ||
| + | |||
| + | Overexpressing OsDREB2A in soybeans enhanced salt tolerance by accumulating osmolytes, such as soluble sugars and free proline, and improving the expression levels of some stress-responsive transcription factors and key genes<ref name="pmid:24376625"/>. | ||
| + | |||
| + | DREB2s (dehydration-responsive element-binding protein 2s) are transcription factors that interact with a cis-acting DRE (dehydration-responsive element)/CRT (C-repeat) sequence and activate the expression of downstream genes involved in water- and heat-shock stress responses and tolerance in Arabidopsis thaliana<ref name="pmid:20049613"/>. | ||
===Expression=== | ===Expression=== | ||
Revision as of 01:45, 13 May 2014
Please input one-sentence summary here.
Contents
Annotated Information
Function
Our results show that the LcSAIN1 gene might play an important positive modulation role in increasing the expression of transcription factors (MYB2 and DREB2A) and functional genes (P5CS and RAB18) in transgenic plants under salt stress and that it augments stress tolerance through the accumulation of compatible solutes (proline and soluble sugar) and the alleviation of changes in reactive oxygen species[1].
The dehydration responsive element binding (DREB) transcription factors play an important role in regulating stress-related genes[2].
The DREB and CBF transcription factors play a critical role in plant development and abiotic stress responses and, therefore, represent attractive targets for a molecular plant breeding approach[3].
MYB-type transcription factors play a diverse role in plant development and response to abiotic stress[4].
OsDREB2A, a member of the DREBP subfamily of AP2/ERF transcription factors in rice (Oryza sativa), is involved in the abiotic stress response[2].
Induced over-expression of the transcription factor OsDREB2A improves drought tolerance in rice[3].
These findings suggest that OsMYB2 encodes a stress-responsive MYB transcription factor that plays a regulatory role in tolerance of rice to salt, cold, and dehydration stress[4].
ZFP179 encodes a 17.95 kDa protein with two C2H2-type zinc finger motifs having transcriptional activation activity[5].
Overexpressing OsDREB2A in soybeans enhanced salt tolerance by accumulating osmolytes, such as soluble sugars and free proline, and improving the expression levels of some stress-responsive transcription factors and key genes[2].
DREB2s (dehydration-responsive element-binding protein 2s) are transcription factors that interact with a cis-acting DRE (dehydration-responsive element)/CRT (C-repeat) sequence and activate the expression of downstream genes involved in water- and heat-shock stress responses and tolerance in Arabidopsis thaliana[6].
Expression
Please input expression information here.
Evolution
Please input evolution information here.
You can also add sub-section(s) at will.
Labs working on this gene
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References
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Structured Information
| Gene Name |
Os01g0165000 |
|---|---|
| Description |
DRE binding protein 2 |
| Version |
NM_001048642.1 GI:115434697 GeneID:4324418 |
| Length |
4744 bp |
| Definition |
Oryza sativa Japonica Group Os01g0165000, 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 1:3355461..3360204 |
| Sequence Coding Region |
3355782..3355828,3356445..3357222 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008394:3355461..3360204 source=RiceChromosome01 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008394:3355461..3360204 source=RiceChromosome01 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atggagcggggggaggggaggaggggagattgctccgtgcaagtgaggaagaagagaacgcgaaggaaaagcgatggccctgattcaatcgctgaaaccatcaagtggtggaaggagcaaaaccagaagctccaggaggagaatagctccaggaaagcgccagccaaggggtccaagaaagggtgcatggctgggaaaggaggtccggaaaattcaaattgtgcttaccgcggtgtcaggcaacggacatggggtaagtgggtggctgagatccgtgaaccaaaccgtggaaggcgcctatggctaggatcatttcctactgcgctggaggctgcgcatgcatacgatgaggcggcaagggcaatgtatggtcccacagcacgtgtcaattttgcagataattccacagatgccaactctggctgcacatcagcaccttcattgatgatgtctaatgggccggccactataccttctgatgagaaggatgagctggaatctcctcctttcatcgtggctaatgggccagctgtgttgtatcagcctgataagaaggatgtgttggaacgtgtagtccctgaggtgcaggatgttaaaacagaagggagcaatggcttgaaacgtgtttgtcaggagcggaagaatatggaggtatgtgaatcagaagggatcgttttacacaaagaagtgaacataagttatgattatttcaatgtccatgaagttgttgagatgataattgttgaattaagtgctgatcagaaaacggaagtacatgaagagtaccaagagggagatgatgggtttagccttttctcctattag</cdnaseq> |
| Protein Sequence |
<aaseq>MERGEGRRGDCSVQVRKKRTRRKSDGPDSIAETIKWWKEQNQKL QEENSSRKAPAKGSKKGCMAGKGGPENSNCAYRGVRQRTWGKWVAEIREPNRGRRLWL GSFPTALEAAHAYDEAARAMYGPTARVNFADNSTDANSGCTSAPSLMMSNGPATIPSD EKDELESPPFIVANGPAVLYQPDKKDVLERVVPEVQDVKTEGSNGLKRVCQERKNMEV CESEGIVLHKEVNISYDYFNVHEVVEMIIVELSADQKTEVHEEYQEGDDGFSLFSY</aaseq> |
| Gene Sequence |
<dnaseqindica>322..368#985..1762#agcagccgcccccgcccgcggttgcttcccctccccaccacgtcaaaacccaaccccaaccatgatgctcctgcgccaccaccaccacccccacagcggcgccgccaccaccagcagcagctgcagcggcggcggcggctgttagagaggagggcacacaccaccaccgacaccgacacgctcgccatgccaccaagcgaggcggcggcgtgaggcgacgcagatctgaacggaggaggaataggaagaagggaggaggaggggagggagaggagttggaagagttggaggaggaggagatctctttcttgttcccgctcgatggagcggggggaggggaggaggggagattgctccgtgcaagtgaggtgagctgggattttcttgacttgttttttttattctttttttctctcgtgatgaatctctgagcattgctgagagcggcgctgcttgtggttgttgtggagtagttgcggcatggaatcgatgcatgcttgtgtgcttactttttatcggtagtaattcttgttatgaacatgttgaaagtagagtaaggctatctgtttgtccgtctaattcgtttgaagaatgtttttgtttccctttcgtcaagtttattattagttgggaattatagctggatgagatttcaggacggcgtctagtagctttcatgtgttaaatcgggtggaatagtgacacccttgaaattgaaattgagtgggaaatcttctgtgttcttggcggtgcacgtgctgttgcttgtggaatgccatcgtggcgcaacatgaaaaagaaaagaagtattttattcttagggccgcttaccgttgattgctgatagcctccttgatttttggacaaatgaaaaggattccgcttttggtttgttgtttttcataatttcaattgcatgctgtttcgatttgtgtcttgcaatgttcagctttgtggaattattgagttacctcattgggtcaggaagaagagaacgcgaaggaaaagcgatggccctgattcaatcgctgaaaccatcaagtggtggaaggagcaaaaccagaagctccaggaggagaatagctccaggaaagcgccagccaaggggtccaagaaagggtgcatggctgggaaaggaggtccggaaaattcaaattgtgcttaccgcggtgtcaggcaacggacatggggtaagtgggtggctgagatccgtgaaccaaaccgtggaaggcgcctatggctaggatcatttcctactgcgctggaggctgcgcatgcatacgatgaggcggcaagggcaatgtatggtcccacagcacgtgtcaattttgcagataattccacagatgccaactctggctgcacatcagcaccttcattgatgatgtctaatgggccggccactataccttctgatgagaaggatgagctggaatctcctcctttcatcgtggctaatgggccagctgtgttgtatcagcctgataagaaggatgtgttggaacgtgtagtccctgaggtgcaggatgttaaaacagaagggagcaatggcttgaaacgtgtttgtcaggagcggaagaatatggaggtatgtgaatcagaagggatcgttttacacaaagaagtgaacataagttatgattatttcaatgtccatgaagttgttgagatgataattgttgaattaagtgctgatcagaaaacggaagtacatgaagagtaccaagagggagatgatgggtttagccttttctcctattagagtagtagtcatgctgcgggtcaataggaatatttcattctagctgctaggggatacttcaaatatctgcaacctgaagctttgtagtcatttacggttttcgtcttactgggtaatagctttatatatactataagccaactggtacaagaagttgtactgtgtgttgagtgcactgtggtaaaaatgaatctatatttaatgagcttactctgtcaatatttttgcttattttagtgtggttaaactcaggttagatattcaaaacgagtggcagatacttcaaagactttaggatcgaattaaattctcaaacaggtatattaggaagtttatttctgcatgcataaaagtatgacaaactatgatagtacaaatttgcatgcatatggaattttaaatacttaaacatactactatcgcattatagcgctctatggtcattcaaagtaccaaaagatacatcatggagatttcataaggggaagttgcagacattctctgaattcaagcctccttgtttcactgtgaaaggtcttctgtttgttaggccagtaggtcagccaaatccagcctctaatctcccagtccatggtcttccctaatgctgcaccacagatcttccaccagacgctgtctccatattcatcacgtgcgaaaatgacaccacccttcttcgtgaatgggcgatacacggtcgagtacctgtcacgaaaccaggcccgtggctgaagcagggagagcttggaaggctttgaagaataaacctcccttccgtttacaccatcatggagaaaccagttcaaggttgtagtgtttccatgcacagactgttcaaatttccagggtttcatggtcagtgtgaggctttcgctgaccgatgcctttagtccaaatgtgtttggggggtcgaatgaaccttcaatgcccttctcaaggccaaactcatgcgtggggttgtcggaggacttgctgactgaaaccgacaggacatctgattgttgcataggtgtgatttgcagcataacacgtgatggaaagtgcttctcctcagagccatgtccacgttcagtcatgaggatctcggagaccaaagagtccacatcacacctgagatgaatccactgtaagtgccgctcttggttttagatgatacacgtatggttgttttttttccttgtgcagttaattgtaactttgaaacaattcagtttgtagatagactgcttttcaaggtctagaaaactctgatttaactacctaaattgagttcttctgcagctggtatacagggagaagcatgttaccgaactatgcataattgcttgctcaatgttaccttactgtaggcaccaaccaaattatttgctagttaaacctttagctttttttaccaaacatatgcagctacgctttgcatgccgcaaacttaattggttcccccgagtgatactactgtcacctcaggatgagtaggttttttattttcacctaaattagtaagtgtgtatacagttcatatgagatagaatcaaatccttgaataaattactgaccttatgttgtccacctttatctcgacatcaatccagttgtcccttctgattgttttgtaggcgagctgaatcacaccttcaagttgctgataagtaagcgagaagagaaggcgctcatcctgtgttggcactgcaggatcttccatgctcatggcaatgagtgggcagtatagctggaccttccagagcccacttgctgaaagagcatatgagaacagtggcgatggcaccccaaatgaatggtgtgaggatcgttgctcaacaatccagttagtcactgcaagattcattgtctgcatccattgctcctcaaggtttgctcccaacattctgacaaaggtctttgcagcatctttgcactttggcccagtcagctgagtcctcagggattcgaggcatcgacagcgaagagcatggggagcctcatagatgcaaactaggaaggccagggacaagaaaactatgttaaacacgtcctttagattgccatgaatctgtgccctgggaaactgaaaggacagctttttgtttggtccggatctcagcacccagtccacaatgtcaacaaacaactctaacatctcttgttcgtctagagactgctgggtgtatgatttcaggtggactggttttgacgtccacagagaaattggcacacggtaatttgcaaagatggagaaggtgacaaaggagggctgggtgggaggggttttgacaactgataggttcaccgatggctgtgatgattctgatgctgatggtgtggggcagatgcaaagggacatggcgttggagcgccattgggagaacggaggcaggttggtgatccaaccccatacatcaagaggtaagctgtgagccattacgttgttgaaaacttgagcttgttttgcaatgtgggagtatcccagtattggtgtggttttatagatggaagagatgatggttcctcagataaaattttggctcatccatgactgagtctaatgaagcacggcataatttttggtaaagcggattcttggttgttagaagaggaaatcaagtcattgagctgaggaatctttgttgttaattggagtttgaagaatcttcatttgtgctttgcacaggtgctaaagccaaaagttaactgctatacggtaatatgatatatcaaacccaagttggttggctaatgttgtagtgaagagaatataacgtggctctaaacaggaaagctggaaagaacgatatggttgggtggaatggattagtttggatggattctggataactcggttcaataagggcctaacgacaccaaatttgtgacttgaaggttagcttgtgtgtcgactgggaattggaacctgatgcatctcactctttgcttccgttccgtcaagcttcaagatttacctctcaatcgagtattgctttatac</dnaseqindica> |
| External Link(s) |
- ↑ Cite error: Invalid
<ref>tag; no text was provided for refs namedpmid:23695503 - ↑ 2.0 2.1 2.2 Cite error: Invalid
<ref>tag; no text was provided for refs namedpmid:24376625 - ↑ 3.0 3.1 Cite error: Invalid
<ref>tag; no text was provided for refs namedpmid:22078375 - ↑ 4.0 4.1 Cite error: Invalid
<ref>tag; no text was provided for refs namedpmid:22301384 - ↑ Cite error: Invalid
<ref>tag; no text was provided for refs namedpmid:20460361 - ↑ Cite error: Invalid
<ref>tag; no text was provided for refs namedpmid:20049613