生物
水稻
细胞生物学
钙
细胞质
转录因子
磷酸化
突变体
拟南芥
耐寒性
拟南芥
植物
基因
生物化学
化学
有机化学
作者
Jiachang Wang,Yulong Ren,Xi Liu,Sheng Luo,Xiao Zhang,Xin Liu,Qibing Lin,Shanshan Zhu,Hua Wan,Yang Yang,Yu Zhang,Bin Lei,Chunlei Zhou,Tian Pan,Yongfei Wang,Mingming Wu,Ruonan Jing,Yang Xu,Meng Han,Fuqing Wu
出处
期刊:Molecular Plant
[Elsevier BV]
日期:2020-12-02
卷期号:14 (2): 315-329
被引量:135
标识
DOI:10.1016/j.molp.2020.11.022
摘要
Low temperature is a major environmental factor that limits plant growth and productivity. Although transient elevation of cytoplasmic calcium has long been recognized as a critical signal for plant cold tolerance, the calcium channels responsible for this process have remained largely elusive. Here we report that OsCNGC9, a cyclic nucleotide-gated channel, positively regulates chilling tolerance by mediating cytoplasmic calcium elevation in rice (Oryza sativa). We showed that the loss-of-function mutant of OsCNGC9 is defective in cold-induced calcium influx and more sensitive to prolonged cold treatment, whereas OsCNGC9 overexpression confers enhanced cold tolerance. Mechanistically, we demonstrated that in response to chilling stress, OsSAPK8, a homolog of Arabidopsis thaliana OST1, phosphorylates and activates OsCNGC9 to trigger Ca2+ influx. Moreover, we found that the transcription of OsCNGC9 is activated by a rice dehydration-responsive element-binding transcription factor, OsDREB1A. Taken together, our results suggest that OsCNGC9 enhances chilling tolerance in rice through regulating cold-induced calcium influx and cytoplasmic calcium elevation.
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