A Gγ protein regulates alkaline sensitivity in crops.

Zhang, Huili; Yu, Feifei; Xie, Peng; Sun, Shengyuan; Qiao, Xinhua; Tang, Sanyuan; Chen, Chengxuan; Yang, Sen et al. · Science · 2023

basic_science · Level V

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Abstract

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, <i>Alkaline Tolerance 1</i> (<i>AT1</i>), specifically related to alkaline-salinity sensitivity. An <i>at1</i> allele with a carboxyl-terminal truncation increased sensitivity, whereas knockout of <i>AT1</i> increased tolerance to alkalinity in sorghum, millet, rice, and maize. <i>AT1</i> encodes an atypical G protein γ subunit that affects the phosphorylation of aquaporins to modulate the distribution of hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>)<sub>.</sub> These processes appear to protect plants against oxidative stress by alkali. Designing knockouts of <i>AT1</i> homologs or selecting its natural nonfunctional alleles could improve crop productivity in sodic lands.

Medical subject headings