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非生物胁迫下植物脂质信号传导的功能与相互作用

Functions and interaction of plant lipid signalling under abiotic stresses.

作者信息

Liang Y, Huang Y, Liu C, Chen K, Li M

机构信息

Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection, Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin, Guangxi Normal University, College of Life Science, Guilin, China.

Guilin University of Electronic Technology, School of Mechanical and Electrical Engineering, Guilin, China.

出版信息

Plant Biol (Stuttg). 2023 Apr;25(3):361-378. doi: 10.1111/plb.13507. Epub 2023 Feb 17.

Abstract

Lipids are the primary form of energy storage and a major component of plasma membranes, which form the interface between the cell and the extracellular environment. Several lipids - including phosphoinositide, phosphatidic acid, sphingolipids, lysophospholipids, oxylipins, and free fatty acids - also serve as substrates for the generation of signalling molecules. Abiotic stresses, such as drought and temperature stress, are known to affect plant growth. In addition, abiotic stresses can activate certain lipid-dependent signalling pathways that control the expression of stress-responsive genes and contribute to plant stress adaptation. Many studies have focused either on the enzymatic production and metabolism of lipids, or on the mechanisms of abiotic stress response. However, there is little information regarding the roles of plant lipids in plant responses to abiotic stress. In this review, we describe the metabolism of plant lipids and discuss their involvement in plant responses to abiotic stress. As such, this review provides crucial background for further research on the interactions between plant lipids and abiotic stress.

摘要

脂质是能量储存的主要形式,也是质膜的主要成分,质膜形成了细胞与细胞外环境之间的界面。几种脂质——包括磷酸肌醇、磷脂酸、鞘脂、溶血磷脂、氧脂和游离脂肪酸——也作为信号分子生成的底物。已知干旱和温度胁迫等非生物胁迫会影响植物生长。此外,非生物胁迫可激活某些脂质依赖性信号通路,这些信号通路控制应激反应基因的表达并有助于植物应激适应。许多研究要么集中在脂质的酶促产生和代谢上,要么集中在非生物胁迫反应的机制上。然而,关于植物脂质在植物对非生物胁迫反应中的作用的信息很少。在这篇综述中,我们描述了植物脂质的代谢,并讨论了它们在植物对非生物胁迫反应中的作用。因此,这篇综述为进一步研究植物脂质与非生物胁迫之间的相互作用提供了关键背景。

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