首页> 外文期刊>The Plant Cell >Disrupting Two Arabidopsis thaliana Xylosyltransferase Genes Results in Plants Deficient in Xyloglucan, a Major Primary Cell Wall Component.
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Disrupting Two Arabidopsis thaliana Xylosyltransferase Genes Results in Plants Deficient in Xyloglucan, a Major Primary Cell Wall Component.

机译:破坏两个拟南芥木糖基转移酶基因会导致植物缺乏木葡聚糖(一种主要的主要细胞壁成分)。

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Xyloglucans are the main hemicellulosic polysaccharides found in the primary cell walls of dicots and nongraminaceous monocots, where they are thought to interact with cellulose to form a three-dimensional network that functions as the principal load-bearing structure of the primary cell wall. To determine whether two Arabidopsis thaliana genes that encode xylosyltransferases, XXT1 and XXT2, are involved in xyloglucan biosynthesis in vivo and to determine how the plant cell wall is affected by the lack of expression of XXT1, XXT2, or both, we isolated and characterized xxt1 and xxt2 single and xxt1 xxt2 double T-DNA insertion mutants. Although the xxt1 and xxt2 mutants did not have a gross morphological phenotype, they did have a slight decrease in xyloglucan content and showed slightly altered distribution patterns for xyloglucan epitopes. More interestingly, the xxt1 xxt2 double mutant had aberrant root hairs and lacked detectable xyloglucan. The reduction of xyloglucan in the xxt2 mutant and the lack of detectable xyloglucan in the xxt1 xxt2 double mutant resulted in significant changes in the mechanical properties of these plants. We conclude that XXT1 and XXT2 encode xylosyltransferases that are required for xyloglucan biosynthesis. Moreover, the lack of detectable xyloglucan in the xxt1 xxt2 double mutant challenges conventional models of the plant primary cell wall.
机译:木葡聚糖是在双子叶植物和非淀粉单子叶植物的原代细胞壁中发现的主要半纤维素多糖,据认为它们与纤维素相互作用形成一个三维网络,该网络起着原代细胞壁的主要承载结构的作用。为了确定编码木糖基转移酶XXT1和XXT2的两个拟南芥基因是否在体内参与木葡聚糖的生物合成,并确定缺乏XXT1,XXT2或两者缺乏表达对植物细胞壁的影响,我们分离并鉴定了xxt1 xxt2单和xxt1 xxt2双T-DNA插入突变体。尽管xxt1和xxt2突变体没有明显的形态表型,但它们的木葡聚糖含量确实有所下降,并且木葡聚糖表位的分布模式略有变化。更有趣的是,xxt1 xxt2双突变体的根毛异常,并且缺乏可检测的木葡聚糖。 xxt2突变体中木葡聚糖的减少和xxt1 xxt2双突变体中木糖葡聚糖的缺乏导致了这些植物的机械特性发生重大变化。我们得出结论,XXT1和XXT2编码木葡聚糖生物合成所需的木糖基转移酶。此外,在xxt1 xxt2双重突变体中缺乏可检测的木葡聚糖对植物原代细胞壁的常规模型提出了挑战。

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