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Heterogeneity in the chemistry, structure and function of plant cell walls

机译:植物细胞壁化学,结构和功能上的异质性

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摘要

Higher plants resist the forces of gravity and powerful lateral forces through the cumulative strength of the walls that surround individual cells. These walls consist mainly of cellulose, noncellulosic polysaccharides and lignin, in proportions that depend upon the specific functions of the cell and its stage of development. Spatially and temporally controlled heterogeneity in the physicochemical properties of wall polysaccharides is observed at the tissue and individual cell levels, and emerging in situ technologies are providing evidence that this heterogeneity also occurs across a single cell wall. We consider the origins of cell wall heterogeneity and identify contributing factors that are inherent in the molecular mechanisms of polysaccharide biosynthesis and are crucial for the changing biological functions of the wall during growth and development. We propose several key questions to be addressed in cell wall biology, together with an alternative two-phase model for the assembly of noncellulosic polysaccharides in plants.
机译:高等植物通过围绕单个细胞的壁的累积强度来抵抗重力和强大的横向力。这些壁主要由纤维素,非纤维素多糖和木质素组成,其比例取决于细胞的特定功能及其发育阶段。在组织和单个细胞水平上观察到了壁多糖的物理化学性质的时空控制异质性,新兴的原位技术提供了这种异质性也发生在单个细胞壁上的证据。我们考虑细胞壁异质性的起源,并确定在多糖生物合成的分子机制中固有的,对于在生长和发育过程中改变壁的生物学功能至关重要的影响因素。我们提出了细胞壁生物学中要解决的几个关键问题,以及植物中非纤维素多糖组装的另一种两阶段模型。

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