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Current challenges in cell wall biology in the cereals and grasses

机译:谷物和禾本科植物细胞壁生物学的当前挑战

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摘要

Plant cell walls consist predominantly of polysaccharides and lignin. There has been a surge of research activity in plant cell wall biology in recent years, in two key areas. Firstly, in the area of human health it is now recognized that cell wall polysaccharides are key components of dietary fiber, which carries significant health benefits. Secondly, plant cell walls are major constituents of lignocellulosic residues that are being developed as renewable sources of liquid transport biofuels. In both areas, the cell walls of the Poaceae, which include the cereals and grasses, are particularly important. The non-cellulosic wall polysaccharides of the Poaceae differ in comparison with those of other vascular plants, insofar as they contain relatively high levels of heteroxylans as “core” polysaccharide constituents and relatively smaller amounts of heteromannans, pectic polysaccharides, and xyloglucans. Certain grasses and cereals walls also contain (1,3;1,4)-β-glucans, which are not widely distributed outside the Poaceae. Although some genes involved in cellulose, heteroxylan, and (1,3;1,4)-β-glucan synthesis have been identified, mechanisms that control expression of the genes are not well defined. Here we review current knowledge of cell wall biology in plants and highlight emerging technologies that are providing new and exciting insights into the most challenging questions related to the synthesis, re-modeling and degradation of wall polysaccharides.
机译:植物细胞壁主要由多糖和木质素组成。近年来,在两个关键领域,植物细胞壁生物学的研究活动激增。首先,在人类健康领域,现在已经认识到细胞壁多糖是膳食纤维的关键成分,具有重要的健康益处。其次,植物细胞壁是木质纤维素残留物的主要成分,木质纤维素残留物正在被开发为液体运输生物燃料的可再生来源。在这两个地区,禾本科的细胞壁(包括谷物和草)特别重要。禾本科的非纤维素壁多糖与其他维管植物的壁多糖不同,因为它们包含相对较高水平的杂木聚糖作为“核心”多糖成分,并且包含相对少量的杂甘露聚糖,果胶多糖和木葡聚糖。某些草和谷类的壁还含有(1,3; 1,4)-β-葡聚糖,在禾本科之外没有广泛分布。尽管已鉴定出一些与纤维素,杂木聚糖和(1,3; 1,4)-β-葡聚糖合成有关的基因,但控制基因表达的机制尚不明确。在这里,我们回顾了植物中细胞壁生物学的最新知识,并重点介绍了新兴技术,这些技术为与壁多糖的合成,重塑和降解相关的最具挑战性的问题提供了令人振奋的新见解。

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