Bacete Laura, Hamann Thorsten
Institute for Biology, Faculty of Natural Sciences, Norwegian University of Science and Technology, 5 Høgskoleringen, 7491 Trondheim, Norway.
Plants (Basel). 2020 May 1;9(5):574. doi: 10.3390/plants9050574.
The plant cell walls surrounding all plant cells are highly dynamic structures, which change their composition and organization in response to chemical and physical stimuli originating both in the environment and in plants themselves. They are intricately involved in all interactions between plants and their environment while also providing adaptive structural support during plant growth and development. A key mechanism contributing to these adaptive changes is the cell wall integrity (CWI) maintenance mechanism. It monitors and maintains the functional integrity of cell walls by initiating adaptive changes in cellular and cell wall metabolism. Despite its importance, both our understanding of its mode of action and knowledge regarding the molecular components that form it are limited. Intriguingly, the available evidence implicates mechanosensing in the mechanism. Here, we provide an overview of the knowledge available regarding the molecular mechanisms involved in and discuss how mechanoperception and signal transduction may contribute to plant CWI maintenance.
包围所有植物细胞的植物细胞壁是高度动态的结构,它们会根据来自环境和植物自身的化学和物理刺激改变其组成和组织结构。它们复杂地参与植物与其环境之间的所有相互作用,同时在植物生长和发育过程中提供适应性结构支持。促成这些适应性变化的一个关键机制是细胞壁完整性(CWI)维持机制。它通过启动细胞和细胞壁代谢的适应性变化来监测和维持细胞壁的功能完整性。尽管其很重要,但我们对其作用模式的理解以及对构成它的分子成分的了解都很有限。有趣的是,现有证据表明机械传感参与了该机制。在这里,我们概述了有关所涉及分子机制的现有知识,并讨论机械感知和信号转导如何有助于植物CWI的维持。