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The Regulation of Cellulose Biosynthesis in Plants

机译:植物中纤维素生物合成的调节

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摘要

Cell walls define the shape of plant cells, controlling the extent and orientation of cell elongation, and hence organ growth. The main load-bearing component of plant cell walls is cellulose, and how plants regulate its biosynthesis during development and in response to various environmental perturbations is a central question in plant biology. Cellulose is synthesized by cellulose synthase (CESA) complexes (CSCs) that are assembled in the Golgi apparatus and then delivered to the plasma membrane (PM), where they actively synthesize cellulose. CSCs travel along cortical microtubule paths that define the orientation of synthesis of the cellulose microfibrils. CSCs recycle between the PM and various intracellular compartments, and this trafficking plays an important role in determining the level of cellulose synthesized. In this review, we summarize recent findings in CESA complex organization, CESA posttranslational modifications and trafficking, and other components that interact with CESAs. We also discuss cell wall integrity maintenance, with a focus on how this impacts cellulose biosynthesis.
机译:细胞壁限定了植物细胞的形状,控制细胞伸长的程度和取向,并因此控制器官生长。植物细胞壁的主要承载部件是纤维素,以及植物如何在发育过程中调节其生物合成,并响应各种环境扰动是植物生物学中的核心问题。通过纤维素合酶(CESA)复合物(CSC)合成纤维素,其在GOLGI装置中组装,然后递送到血浆膜(PM),在那里它们主动合成纤维素。 CSCS沿着皮质微管路径,定义纤维素微纤维的合成取向。 CSC在PM和各种细胞内隔室之间回收,并且该贩运在确定合成的纤维素水平方面发挥着重要作用。在这篇综述中,我们总结了CESA复杂组织,CESA后期修改和贩运的最近调查结果以及与CESAS互动的其他组成部分。我们还讨论了细胞墙完整性维护,重点关注这对纤维素生物合成的影响。

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