- Information
- Symbol: OsCIPK12
- MSU: LOC_Os01g55450
- RAPdb: Os01g0759400
- PSP score
- LOC_Os01g55450.1: 0.0491
- PLAAC score
- LOC_Os01g55450.1: 0
- pLDDT score
- 69.92
- Protein Structure from AlphaFold and UniProt
- Publication
- Genbank accession number
- Key message
- Transgenic plants overexpressing the transgenes OsCIPK03, OsCIPK12, and OsCIPK15 showed significantly improved tolerance to cold, drought, and salt stress, respectively
- Under cold and drought stresses, OsCIPK03- and OsCIPK12-overexpressing transgenic plants accumulated significantly higher contents of proline and soluble sugars than the wild type
- Connection
- OsCIPK12, OsCK1~OsCIPK31~CIPK03, Characterization of stress-responsive CIPK genes in rice for stress tolerance improvement, To prove that some of these stress-responsive OsCIPK genes are potentially useful for stress-tolerance improvement, three CIPK genes (OsCIPK03, OsCIPK12, and OsCIPK15) were overexpressed in japonica rice ‘Zhonghua 11’
- OsCIPK12, OsCK1~OsCIPK31~CIPK03, Characterization of stress-responsive CIPK genes in rice for stress tolerance improvement, Transgenic plants overexpressing the transgenes OsCIPK03, OsCIPK12, and OsCIPK15 showed significantly improved tolerance to cold, drought, and salt stress, respectively
- OsCIPK12, OsCK1~OsCIPK31~CIPK03, Characterization of stress-responsive CIPK genes in rice for stress tolerance improvement, Under cold and drought stresses, OsCIPK03- and OsCIPK12-overexpressing transgenic plants accumulated significantly higher contents of proline and soluble sugars than the wild type
- OsCIPK12, OsCIPK15, Characterization of stress-responsive CIPK genes in rice for stress tolerance improvement, To prove that some of these stress-responsive OsCIPK genes are potentially useful for stress-tolerance improvement, three CIPK genes (OsCIPK03, OsCIPK12, and OsCIPK15) were overexpressed in japonica rice ‘Zhonghua 11’
- OsCIPK12, OsCIPK15, Characterization of stress-responsive CIPK genes in rice for stress tolerance improvement, Transgenic plants overexpressing the transgenes OsCIPK03, OsCIPK12, and OsCIPK15 showed significantly improved tolerance to cold, drought, and salt stress, respectively
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