1. A guanine insert in <italic>OsBBS1</italic> leads to early leaf senescence and salt stress sensitivity in rice (<italic>Oryza sativa</italic> L.).
- Author
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Zeng, Dong-Dong, Yang, Cheng-Cong, Qin, Ran, Alamin, Md., Yue, Er-Kui, Jin, Xiao-Li, and Shi, Chun-Hai
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RICE proteins ,LEAF aging ,EFFECT of salt on plants ,PLANT proteomics ,PLANT molecular genetics - Abstract
Key message: A rice receptor-like kinase gene
OSBBS1 /OsRLCK109 was identified; this gene played vital roles in leaf senescence and the salt stress response.Abstract: Early leaf senescence can cause negative effects on rice yield, but the underlying molecular regulation is not fully understood.bilateral blade senescence 1 (bbs1 ), an early leaf senescence mutant with a premature senescence phenotype that occurs mainly performing at the leaf margins, was isolated from a rice mutant population generated by ethylmethane sulfonate (EMS) treatment. The mutant showed premature leaf senescence beginning at the tillering stage and exhibited severe symptoms at the late grain-filling stage.bbs1 showed accelerated dark-induced leaf senescence. TheOsBBS1 gene was cloned by a map-based cloning strategy, and a guanine (G) insertion was found in the first exon ofLOC_Os03g24930 . This gene encodes a receptor-like cytoplasmic kinase and was namedOsRLCK109 in a previous study. TransgenicLOC_Os03g24930 knockout plants generated by a CRISPR/Cas9 strategy exhibited similar early leaf senescence phenotypes as did thebbs1 mutant, which confirmed thatLOC_Os03g24930 was theOsBBS1 gene.OsBBS1 /OsRLCK109 was expressed in all detected tissues and was predominantly expressed in the main vein region of mature leaves. The expression ofOsBBS1 could be greatly induced by salt stress, and thebbs1 mutant exhibited hypersensitivity to salt stress. In conclusion, this is the first identification ofOsRLCKs participating in leaf senescence and playing critical roles in the salt stress response in rice (Oryza sativa L.). [ABSTRACT FROM AUTHOR]- Published
- 2018
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