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Searching for ABD52007
[ stress-induced transcription factor NAC1 ] |
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Functional details
Molecular Function
S. No. |
GO Id |
GO Description |
1 |
GO:0003677 |
DNA binding |
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2 |
GO:0003700 |
sequence-specific DNA binding transcription factor activity |
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Biological process
Cellular component
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Environment details
Metabolic Pathway details
QTL details
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Plant developmental stage / tissue details
Plant development stage
S. No. |
PO Id |
PO Description |
Presence(+) or absence(-) of gene expression /activity |
1 |
MCP:1000518 |
seedling development stage |
(+) |
2 |
PO:0007115 |
LP.04 four leaves visible |
(+) |
Plant tissue/organ
Others
S. No. |
PO Id |
PO Description |
Presence(+) or absence(-) of gene expression /activity |
Not found |
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Trait details
Physical interaction details
Interaction type: protein-protein
Interaction type: protein-DNA
S. No. |
Primary rice gene loci |
Interacting rice gene loci |
Experiment type |
Id |
Domain name/N or C term |
Amino acid involved in interaction |
Id |
Domain name/N or C term |
Bases
involved in interaction |
Reference point |
cis-elements [PLACE Id] |
1 |
ABD52007 |
- |
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LOC_Os02g32520 |
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- - |
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Protein-DNA interaction analysis : Yeast one-hybrid analysis |
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TSS - Transcriptional start site
TrSS - Translational start site |
TSS-Pu - Putative TSS by cDNA alignment
TSS-P - Predicted TSS |
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Related publications [Sorted by year] |
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1 |
Luo Chengke; Guo Chiming; Wang Wujing; Wang Liangjiang; Chen Liang; Overexpression of a new stress-repressive gene OsDSR2 encoding a protein with a DUF966 domain increases salt and simulated drought stress sensitivities and reduces ABA sensitivity in rice. Plant cell reports 2014:33
PMID [24247850]
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2 |
Saad Abu Sefyan I; Li Xu; Li He-Ping; Huang Tao; Gao Chun-Sheng; Guo Mao-Wei; Cheng Wei; Zhao Guang-Yao; Liao Yu-Cai; A rice stress-responsive NAC gene enhances tolerance of transgenic wheat to drought and salt stresses. Plant science 2013: 203-204C
PMID [23415326]
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3 |
Hu Honghong; Dai Mingqiu; Yao Jialing; Xiao Benze; Li Xianghua; Zhang Qifa; Xiong Lizhong; Overexpressing a NAM, ATAF, and CUC (NAC) transcription factor enhances drought resistance and salt tolerance in rice. Proceedings of The National Academy of Sciences of The United States of America 2006:103
PMID [16924117]
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