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植物的耐碱性:AT1 基因及其他。

Alkaline tolerance in plants: The AT1 gene and beyond.

机构信息

MOE Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Lanzhou, Gansu, 730000, China.

College of Life Science and Technology, Tarim University, Alar, Xinjiang, 843300, China.

出版信息

J Plant Physiol. 2024 Dec;303:154373. doi: 10.1016/j.jplph.2024.154373. Epub 2024 Oct 21.

Abstract

Salt stress poses a serious challenge to crop production and a significant threat to global food security and ecosystem sustainability. Soil salinization commonly occurs in conjunction with alkalization, which causes combined saline-alkaline stress. Alkaline soil predominantly comprises NaHCO and NaCO and is characterized by a high pH. The combined saline-alkaline stress is more harmful to crop production than neutral salt stress owing to the effects of both elevated salinity and high pH stress. Through genome association analysis of sorghum, a recent study has identified Alkaline tolerance 1 (AT1) as a contributor to alkaline sensitivity in crops. AT1, which is the first gene to be identified as being specifically associated with alkaline tolerance, encodes a G protein γ-subunit (Gγ). Editing of AT1 enhances the yields of sorghum, rice, maize, and millet grown in alkaline soils, indicating that AT1 has potential for generating alkaline-resistant crops. In this review, we summarize the role of AT1 in alkaline tolerance in plants and present a phylogenetic analysis along with a motif comparison of Gγ subunits of monocot and dicot plants across various species.

摘要

盐胁迫对作物生产构成严重挑战,对全球粮食安全和生态系统可持续性构成重大威胁。土壤盐碱化通常与碱化同时发生,导致盐碱胁迫。碱性土壤主要由 NaHCO 和 NaCO 组成,其特点是 pH 值高。由于高盐度和高 pH 值胁迫的共同作用,复合盐碱胁迫对作物生产的危害大于中性盐胁迫。通过对高粱的全基因组关联分析,最近的一项研究表明碱性耐受 1(AT1)是作物对碱性敏感的原因之一。AT1 是第一个被鉴定为与碱性耐受特异性相关的基因,它编码 G 蛋白γ亚基(Gγ)。对 AT1 的编辑提高了在碱性土壤中生长的高粱、水稻、玉米和小米的产量,表明 AT1 具有培育耐碱性作物的潜力。在这篇综述中,我们总结了 AT1 在植物耐碱性中的作用,并对单子叶和双子叶植物的 Gγ亚基进行了系统发育分析和基序比较。

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