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果胶甲酯化的调控:对细胞壁生物力学及发育的影响

Tuning of pectin methylesterification: consequences for cell wall biomechanics and development.

作者信息

Levesque-Tremblay Gabriel, Pelloux Jerome, Braybrook Siobhan A, Müller Kerstin

机构信息

Energy Bioscience Institute, University of California Berkeley, 2151 Berkeley Way, Berkeley, CA, 94704, USA.

出版信息

Planta. 2015 Oct;242(4):791-811. doi: 10.1007/s00425-015-2358-5. Epub 2015 Jul 14.

Abstract

Recent publications have increased our knowledge of how pectin composition and the degree of homogalacturonan methylesterification impact the biochemical and biomechanical properties of plant cell walls, plant development, and plants' interactions with their abiotic and biotic environments. Experimental observations have shown that the relationships between the DM, the pattern of de-methylesterificaton, its effect on cell wall elasticity, other biomechanical parameters, and growth are not straightforward. Working towards a detailed understanding of these relationships at single cell resolution is one of the big tasks of pectin research. Pectins are highly complex polysaccharides abundant in plant primary cell walls. New analytical and microscopy techniques are revealing the composition and mechanical properties of the cell wall and increasing our knowledge on the topic. Progress in plant physiological research supports a link between cell wall pectin modifications and plant development and interactions with the environment. Homogalacturonan pectins, which are major components of the primary cell wall, have a potential for modifications such as methylesterification, as well as an ability to form cross-linked structures with divalent cations. This contributes to changing the mechanical properties of the cell wall. This review aims to give a comprehensive overview of the pectin component homogalacturonan, including its synthesis, modification, regulation and role in the plant cell wall.

摘要

近期的出版物增进了我们对果胶成分以及同型半乳糖醛酸甲酯化程度如何影响植物细胞壁的生化和生物力学特性、植物发育以及植物与非生物和生物环境相互作用的了解。实验观察表明,甲酯化度(DM)、去甲酯化模式、其对细胞壁弹性的影响、其他生物力学参数以及生长之间的关系并非简单直接。在单细胞分辨率下深入理解这些关系是果胶研究的重大任务之一。果胶是植物初生细胞壁中丰富的高度复杂多糖。新的分析和显微镜技术正在揭示细胞壁的组成和力学特性,并增加我们对该主题的了解。植物生理学研究的进展支持了细胞壁果胶修饰与植物发育以及与环境相互作用之间的联系。同型半乳糖醛酸果胶是初生细胞壁的主要成分,具有甲酯化等修饰潜力,以及与二价阳离子形成交联结构的能力。这有助于改变细胞壁的力学特性。本综述旨在全面概述果胶成分同型半乳糖醛酸,包括其合成、修饰、调控及其在植物细胞壁中的作用。

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