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非生物胁迫中的异源三聚体G蛋白信号传导

Heterotrimeric G Protein Signaling in Abiotic Stress.

作者信息

Wang Yijie, Botella Jose Ramón

机构信息

School of Agriculture and Food Sciences, University of Queensland, Brisbane 4072, Australia.

出版信息

Plants (Basel). 2022 Mar 25;11(7):876. doi: 10.3390/plants11070876.

Abstract

As sessile organisms, plants exhibit extraordinary plasticity and have evolved sophisticated mechanisms to adapt and mitigate the adverse effects of environmental fluctuations. Heterotrimeric G proteins (G proteins), composed of α, β, and γ subunits, are universal signaling molecules mediating the response to a myriad of internal and external signals. Numerous studies have identified G proteins as essential components of the organismal response to stress, leading to adaptation and ultimately survival in plants and animal systems. In plants, G proteins control multiple signaling pathways regulating the response to drought, salt, cold, and heat stresses. G proteins signal through two functional modules, the Gα subunit and the Gβγ dimer, each of which can start either independent or interdependent signaling pathways. Improving the understanding of the role of G proteins in stress reactions can lead to the development of more resilient crops through traditional breeding or biotechnological methods, ensuring global food security. In this review, we summarize and discuss the current knowledge on the roles of the different G protein subunits in response to abiotic stress and suggest future directions for research.

摘要

作为固着生物,植物表现出非凡的可塑性,并进化出复杂的机制来适应和减轻环境波动的不利影响。异源三聚体G蛋白(G蛋白)由α、β和γ亚基组成,是介导对无数内部和外部信号作出反应的通用信号分子。大量研究已确定G蛋白是生物体应激反应的重要组成部分,导致植物和动物系统中的适应性并最终实现存活。在植物中,G蛋白控制多种信号通路,调节对干旱、盐、冷和热胁迫的反应。G蛋白通过两个功能模块发出信号,即Gα亚基和Gβγ二聚体,每个模块都可以启动独立或相互依赖的信号通路。通过传统育种或生物技术方法更好地了解G蛋白在应激反应中的作用,可培育出更具抗逆性的作物,确保全球粮食安全。在本综述中,我们总结并讨论了不同G蛋白亚基在应对非生物胁迫中的作用的现有知识,并提出了未来的研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8558/9002505/e2ea51301a30/plants-11-00876-g001.jpg

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