Difference between revisions of "Os12g0586100"
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| − | + | The rice '''''Os12g0586100''''' was reported as '''''SAPK9''''' in 2016 <ref name="ref1" /> by researchers from india. | |
==Annotated Information== | ==Annotated Information== | ||
| + | ===Gene Symbol=== | ||
| + | *'''''Os12g0586100''''' '''''<=>''''' '''''SAPK9''''' | ||
===Function=== | ===Function=== | ||
| − | + | *The SAPK9 is a positive regulator of ABA-mediated stress signaling pathways in rice. | |
| + | ===Phenotypic analysis=== | ||
| + | *the abundance of single gene-derived SAPK9 transcript was significantly higher in drought-tolerant rice genotypes than the drought-sensitive ones, and its expression was comparatively greater in reproductive stage than the vegetative stage. | ||
| + | *The highest expression of SAPK9 gene in drought-tolerant Oryza rufipogon prompted us to clone and characterise the CDS of this allele in details | ||
| + | *Transgenic overexpression (OE) of SAPK9 CDS from O. rufipogon in a drought-sensitive indica rice genotype exhibited significantly improved drought tolerance in comparison to transgenic silencing (RNAi) lines and nontransgenic (NT) plants. | ||
| + | ===Expression=== | ||
| + | *The SAPK9 transcript expression was found to be highest in leaf and upregulated during drought stress and ABA treatment | ||
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You can also add sub-section(s) at will. | You can also add sub-section(s) at will. | ||
==Labs working on this gene== | ==Labs working on this gene== | ||
| − | + | *Advanced Laboratory for Plant Genetic Engineering, Advanced Technology Development Centre, Indian Institute of Technology Kharagpur,Kharagpur 721302, India | |
| + | *Department of Biotechnology, Indian Institute of Technology Kharagpur,Kharagpur 721302, India | ||
==References== | ==References== | ||
| − | + | <references> | |
| − | + | * <ref name="ref1"> | |
| − | = | + | Dey A, Samanta MK, Gayen S, Maiti MK. The sucrose non-fermenting 1-related kinase 2 gene SAPK9 improves drought tolerance and grain yield in rice by modulating cellular osmotic potential, stomatal closure and stress-responsive gene expression. BMC Plant Biol. 2016 Jul 13;16(1):158. doi:10.1186/s12870-016-0845-x. PubMed PMID: 27411911; PubMed Central PMCID:PMC4944446. |
| − | + | </ref> | |
| − | + | </references> | |
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[[Category:Genes]] | [[Category:Genes]] | ||
[[Category:Japonica mRNA]] | [[Category:Japonica mRNA]] | ||
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[[Category:Japonica Chromosome 12]] | [[Category:Japonica Chromosome 12]] | ||
[[Category:Chromosome 12]] | [[Category:Chromosome 12]] | ||
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| + | ==Structured Information== | ||
Latest revision as of 08:24, 21 May 2017
The rice Os12g0586100 was reported as SAPK9 in 2016 [1] by researchers from india.
Contents
Annotated Information
Gene Symbol
- Os12g0586100 <=> SAPK9
Function
- The SAPK9 is a positive regulator of ABA-mediated stress signaling pathways in rice.
Phenotypic analysis
- the abundance of single gene-derived SAPK9 transcript was significantly higher in drought-tolerant rice genotypes than the drought-sensitive ones, and its expression was comparatively greater in reproductive stage than the vegetative stage.
- The highest expression of SAPK9 gene in drought-tolerant Oryza rufipogon prompted us to clone and characterise the CDS of this allele in details
- Transgenic overexpression (OE) of SAPK9 CDS from O. rufipogon in a drought-sensitive indica rice genotype exhibited significantly improved drought tolerance in comparison to transgenic silencing (RNAi) lines and nontransgenic (NT) plants.
Expression
- The SAPK9 transcript expression was found to be highest in leaf and upregulated during drought stress and ABA treatment
You can also add sub-section(s) at will.
Labs working on this gene
- Advanced Laboratory for Plant Genetic Engineering, Advanced Technology Development Centre, Indian Institute of Technology Kharagpur,Kharagpur 721302, India
- Department of Biotechnology, Indian Institute of Technology Kharagpur,Kharagpur 721302, India
References
- ↑ Dey A, Samanta MK, Gayen S, Maiti MK. The sucrose non-fermenting 1-related kinase 2 gene SAPK9 improves drought tolerance and grain yield in rice by modulating cellular osmotic potential, stomatal closure and stress-responsive gene expression. BMC Plant Biol. 2016 Jul 13;16(1):158. doi:10.1186/s12870-016-0845-x. PubMed PMID: 27411911; PubMed Central PMCID:PMC4944446.