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Genetic and Systematic Approaches Toward G Protein-Coupled Abiotic Stress Signaling in Plants

机译:植物中G蛋白偶联非生物胁迫信号的遗传和系统方法

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摘要

Heterotrimeric G protein, composed of Gα, Gβ, and Gγ subunits, modulates plant adaptations to environmental stresses such as high salinity, drought, extreme temperatures and high light intensity. Most of these evidence were however derived solely from conventional genetics methods with which stress-associated phenotypes were compared between wild type and various G protein mutant plants. Recent advances in systematic approaches, mainly transcriptome and proteome, have contributed to in-depth understanding of molecular linkages between G proteins and environmental changes. Here, we update our knowledge on the roles of G proteins in abiotic stress responses. Furthermore, we highlight the current whole genome studies and integrated omics approach to better understand the fundamental G protein functions involved in abiotic stress responses. It is our purpose here to bridge the gap between molecular mechanisms in G protein science and stress biology and pave the way toward crop improvement researches in the future.
机译:异源三聚体G蛋白由Gα,Gβ和Gγ亚基组成,可调节植物对环境胁迫的适应性,例如高盐度,干旱,极端温度和高光照强度。然而,大多数这些证据仅来自常规遗传学方法,利用该方法可以比较野生型和各种G蛋白突变植物之间的胁迫相关表型。系统方法(主要是转录组和蛋白质组)的最新进展有助于深入理解G蛋白与环境变化之间的分子联系。在这里,我们更新了有关G蛋白在非生物应激反应中的作用的知识。此外,我们重点介绍了当前的全基因组研究和综合组学方法,以更好地了解非生物胁迫响应中涉及的基本G蛋白功能。我们的目的是在G蛋白科学的分子机制与胁迫生物学之间架起桥梁,为将来的作物改良研究铺平道路。

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