一种Gγ蛋白调节作物对碱性的敏感性。
A Gγ protein regulates alkaline sensitivity in crops.
作者信息
Zhang Huili, Yu Feifei, Xie Peng, Sun Shengyuan, Qiao Xinhua, Tang Sanyuan, Chen Chengxuan, Yang Sen, Mei Cuo, Yang Dekai, Wu Yaorong, Xia Ran, Li Xu, Lu Jun, Liu Yuxi, Xie Xiaowei, Ma Dongmei, Xu Xing, Liang Zhengwei, Feng Zhonghui, Huang Xiahe, Yu Hong, Liu Guifu, Wang Yingchun, Li Jiayang, Zhang Qifa, Chen Chang, Ouyang Yidan, Xie Qi
机构信息
State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, The Innovative Academy of Seed Design, Chinese Academy of Sciences, Beijing 100101, China.
Breeding Base of State Key Laboratory of Land Degradation and Ecological Restoration of North Western China, School of Agriculture, Ningxia University, Yinchuan 750021, China.
出版信息
Science. 2023 Mar 24;379(6638):eade8416. doi: 10.1126/science.ade8416.
The use of alkaline salt lands for crop production is hindered by a scarcity of knowledge and breeding efforts for plant alkaline tolerance. Through genome association analysis of sorghum, a naturally high-alkaline-tolerant crop, we detected a major locus, (), specifically related to alkaline-salinity sensitivity. An allele with a carboxyl-terminal truncation increased sensitivity, whereas knockout of increased tolerance to alkalinity in sorghum, millet, rice, and maize. encodes an atypical G protein γ subunit that affects the phosphorylation of aquaporins to modulate the distribution of hydrogen peroxide (HO) These processes appear to protect plants against oxidative stress by alkali. Designing knockouts of homologs or selecting its natural nonfunctional alleles could improve crop productivity in sodic lands.
由于缺乏关于植物耐碱性的知识和育种工作,盐碱地用于作物生产受到阻碍。通过对高粱(一种天然耐高碱性作物)进行全基因组关联分析,我们检测到一个主要位点(),它与盐碱敏感性特别相关。一个具有羧基末端截短的等位基因增加了敏感性,而在高粱、谷子、水稻和玉米中敲除则增加了对碱度的耐受性。编码一种非典型G蛋白γ亚基,它影响水通道蛋白的磷酸化,以调节过氧化氢(HO)的分布。这些过程似乎通过碱保护植物免受氧化应激。设计同源基因的敲除或选择其天然无功能等位基因可以提高盐碱地作物的生产力。