Difference between revisions of "Os03g0833200"
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| − | + | The rice '''''Os03g0833200''''' was reported as '''''OsTRM13''''' in 2017 <ref name="ref1" /> by researchers from China and Australia. | |
==Annotated Information== | ==Annotated Information== | ||
| + | ===Gene Symbol=== | ||
| + | *'''''Os03g0833200''''' '''''<=>''''' '''''OsTRM13,TRM13''''' | ||
===Function=== | ===Function=== | ||
| − | + | *OsTRM13, encoding a rice tRNA nucleoside methyltransferase, is an important regulator of salt stress tolerance in rice. | |
| + | |||
| + | ===Phenotypic analysis=== | ||
| + | *OsTRM13 overexpression plants displayed improved salt stress tolerance, and vice versa, OsTRM13 RNA interference (RNAi) plants showed reduced tolerance. | ||
| + | *OsTRM13 complemented a yeast trm13Δ mutant, defcient in Am synthesis, and the purifed OsTrm13 protein catalysed Am nucleoside formation on tRNA-Gly-GCC in vitro. | ||
===Expression=== | ===Expression=== | ||
| − | + | *OsTRM13 transcript levels increased signifcantly upon salt stress and ABA treatment, and the OsTrm13 protein was found to be located primarily to the nucleus. | |
| − | |||
| − | |||
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== | ||
| − | + | *College of Plant Science and Technology, HuaZhong Agricultural University, Wuhan 430070, China | |
| + | *Biomass and Bioenergy Research Centre, HuaZhong Agricultural University, Wuhan 430070, China | ||
| + | *College of Life Science, HuaZhong Agricultural University, Wuhan 430070, China | ||
| + | *College of Horticulture and Forestry Sciences, HuaZhong Agricultural University, Wuhan 430070, China | ||
| + | *School of Biosciences, University of Melbourne, Parkville 3010 VIC, Australia | ||
==References== | ==References== | ||
| − | + | <references> | |
| + | * <ref name="ref1"> | ||
| + | Wang Y, Li D, Gao J, Li X, Zhang R, Jin X, Hu Z, Zheng B, Persson S, Chen P. The 2'-O-methyladenosine nucleoside modification gene OsTRM13 positively regulates salt stress tolerance in rice. J Exp Bot. 2017 Mar 1;68(7):1479-1491. doi: 10.1093/jxb/erx061. PubMed PMID: 28369540. | ||
| + | </ref> | ||
| + | </references> | ||
==Structured Information== | ==Structured Information== | ||
[[Category:Genes]][[Category:Oryza Sativa Japonica Group]][[Category:Japonica Chromosome 3]] | [[Category:Genes]][[Category:Oryza Sativa Japonica Group]][[Category:Japonica Chromosome 3]] | ||
Latest revision as of 02:53, 22 May 2017
The rice Os03g0833200 was reported as OsTRM13 in 2017 [1] by researchers from China and Australia.
Contents
Annotated Information
Gene Symbol
- Os03g0833200 <=> OsTRM13,TRM13
Function
- OsTRM13, encoding a rice tRNA nucleoside methyltransferase, is an important regulator of salt stress tolerance in rice.
Phenotypic analysis
- OsTRM13 overexpression plants displayed improved salt stress tolerance, and vice versa, OsTRM13 RNA interference (RNAi) plants showed reduced tolerance.
- OsTRM13 complemented a yeast trm13Δ mutant, defcient in Am synthesis, and the purifed OsTrm13 protein catalysed Am nucleoside formation on tRNA-Gly-GCC in vitro.
Expression
- OsTRM13 transcript levels increased signifcantly upon salt stress and ABA treatment, and the OsTrm13 protein was found to be located primarily to the nucleus.
You can also add sub-section(s) at will.
Labs working on this gene
- College of Plant Science and Technology, HuaZhong Agricultural University, Wuhan 430070, China
- Biomass and Bioenergy Research Centre, HuaZhong Agricultural University, Wuhan 430070, China
- College of Life Science, HuaZhong Agricultural University, Wuhan 430070, China
- College of Horticulture and Forestry Sciences, HuaZhong Agricultural University, Wuhan 430070, China
- School of Biosciences, University of Melbourne, Parkville 3010 VIC, Australia
References
- ↑ Wang Y, Li D, Gao J, Li X, Zhang R, Jin X, Hu Z, Zheng B, Persson S, Chen P. The 2'-O-methyladenosine nucleoside modification gene OsTRM13 positively regulates salt stress tolerance in rice. J Exp Bot. 2017 Mar 1;68(7):1479-1491. doi: 10.1093/jxb/erx061. PubMed PMID: 28369540.