Difference between revisions of "Os04g0531400"
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* '''''SIT1''''' and '''''SIT2''''' each contribute to salt sensitivity and that their functions are not overlapping. | * '''''SIT1''''' and '''''SIT2''''' each contribute to salt sensitivity and that their functions are not overlapping. | ||
===Expression=== | ===Expression=== | ||
| + | * '''''SIT1''''' and '''''SIT2''''' RNA expression was analyzed by quantitative RT-PCR in various tissues; the highest level of '''''SIT1''''' and a relatively high level of '''''SIT2''''' were detected in roots. '''''SIT1''''' and '''''SIT2''''' transcripts were mainly concentrated in the maturation zone, the region that produces lateral roots and root hairs. | ||
* In RNAi plants, the transcript level of SIT1 was reduced more dramatically than that of '''''SIT2'''''. These results suggest that '''''SIT1''''' is a major contributor to root function and is responsible for the RNAi phenotype. | * In RNAi plants, the transcript level of SIT1 was reduced more dramatically than that of '''''SIT2'''''. These results suggest that '''''SIT1''''' is a major contributor to root function and is responsible for the RNAi phenotype. | ||
Revision as of 12:13, 3 October 2016
The rice Os04g0531400 was reported as OsSIT2 in 2014 [1] by researchers from China.
Contents
Annotated Information
Gene Symbol
- Os04g0531400 <=> OsSIT2,SIT2
Function
- The RLKs SIT2 Negatively Regulate Salt Tolerance in Rice
- SIT1 and SIT2 each contribute to salt sensitivity and that their functions are not overlapping.
Expression
- SIT1 and SIT2 RNA expression was analyzed by quantitative RT-PCR in various tissues; the highest level of SIT1 and a relatively high level of SIT2 were detected in roots. SIT1 and SIT2 transcripts were mainly concentrated in the maturation zone, the region that produces lateral roots and root hairs.
- In RNAi plants, the transcript level of SIT1 was reduced more dramatically than that of SIT2. These results suggest that SIT1 is a major contributor to root function and is responsible for the RNAi phenotype.
Evolution
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Labs working on this gene
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References
- ↑ Li CH, Wang G, Zhao JL, Zhang LQ, Ai LF, Han YF, Sun DY, Zhang SW, Sun Y. The Receptor-Like Kinase SIT1 Mediates Salt Sensitivity by Activating MAPK3/6 and Regulating Ethylene Homeostasis in Rice. Plant Cell. 2014 Jun 6;26(6):2538-2553. [Epub ahead of print] PubMed PMID: 24907341; PubMed Central PMCID: PMC4114950.