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Sticking to cellulose: exploiting Arabidopsis seed coat mucilage to understand cellulose biosynthesis and cell wall polysaccharide interactions

机译:坚持纤维素:利用拟南芥种子外壳粘液以了解纤维素生物合成和细胞壁多糖相互作用

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摘要

The cell wall defines the shape of cells and ultimately plant architecture. It provides mechanical resistance to osmotic pressure while still being malleable and allowing cells to grow and divide. These properties are determined by the different components of the wall and the interactions between them. The major components of the cell wall are the polysaccharides cellulose, hemicellulose and pectin. Cellulose biosynthesis has been extensively studied in Arabidopsis hypocotyls, and more recently in the mucilage-producing epidermal cells of the seed coat. The latter has emerged as an excellent system to study cellulose biosynthesis and the interactions between cellulose and other cell wall polymers. Here we review some of the major advances in our understanding of cellulose biosynthesis in the seed coat, and how mucilage has aided our understanding of the interactions between cellulose and other cell wall components required for wall cohesion. Recently, 10 genes involved in cellulose or hemicellulose biosynthesis in mucilage have been identified. These discoveries have helped to demonstrate that xylan side-chains on rhamnogalacturonan I act to link this pectin directly to cellulose. We also examine other factors that, either directly or indirectly, influence cellulose organization or crystallization in mucilage.
机译:细胞壁限定细胞的形状并最终植物架构。它提供对渗透压的机械抗性,同时仍然是可延展的并且允许细胞生长和分裂。这些性质由墙的不同部件和它们之间的相互作用决定。细胞壁的主要成分是多糖纤维素,半纤维素和果胶。纤维素生物合成已在拟南芥中进行了广泛研究,最近在种子涂层的粘膜产生表皮细胞中更高。后者已成为研究纤维素生物合成和纤维素和其他细胞壁聚合物之间的相互作用的优异系统。在这里,我们审查了我们对种子涂层中纤维素生物合成的理解的一些主要进展,以及粘液如何帮助我们理解纤维素和墙面内粘性所需的其他细胞壁组分之间的相互作用。最近,已经鉴定了参与纤维素或半纤维素生物合成中的10个基因。这些发现有助于证明rhamnogalactuRonan的Xylan侧链,我的行为将该果胶直接连接到纤维素中。我们还检查直接或间接影响纤维素组织或在粘液中结晶的其他因素。

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