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Three AtCesA6?¢????like members enhance biomass production by distinctively promoting cell growth in Arabidopsis

机译:三个类似AtCesA6的成员通过显着促进拟南芥中的细胞生长来提高生物量的产生

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Cellulose is an abundant biopolymer and a prominent constituent of plant cell walls. Cellulose is also a central component to plant morphogenesis and contributes the bulk of a plant's biomass. While cellulose synthase ( CesA ) genes were identified over two decades ago, genetic manipulation of this family to enhance cellulose production has remained difficult. In this study, we show that increasing the expression levels of the three primary cell wall AtCesA6 ?¢????like genes ( AtCesA2 , AtCesA5 , AtCesA6 ), but not AtCesA3 , AtCesA9 or secondary cell wall AtCesA7 , can promote the expression of major primary wall CesA genes to accelerate primary wall CesA complex (cellulose synthase complexes, CSCs) particle movement for acquiring long microfibrils and consequently increasing cellulose production in Arabidopsis transgenic lines, as compared with wild?¢????type. The overexpression transgenic lines displayed changes in expression of genes related to cell growth and proliferation, perhaps explaining the enhanced growth of the transgenic seedlings. Notably, overexpression of the three AtCesA6 ?¢????like genes also enhanced secondary cell wall deposition that led to improved mechanical strength and higher biomass production in transgenic mature plants. Hence, we propose that overexpression of certain AtCesA genes can provide a biotechnological approach to increase cellulose synthesis and biomass accumulation in transgenic plants.
机译:纤维素是一种丰富的生物聚合物,是植物细胞壁的重要组成部分。纤维素也是植物形态发生的重要组成部分,并贡献了植物生物量的大部分。尽管在二十多年前就已经确定了纤维素合酶(CesA)基因,但是对该家族进行遗传操作以提高纤维素产量仍然很困难。在这项研究中,我们表明增加三个主要细胞壁AtCesA6β?样基因(AtCesA2,AtCesA5,AtCesA6)的表达水平,但不增加AtCesA3,AtCesA9或次要细胞壁AtCesA7的表达水平与野生型相比,主要的初级壁CesA基因可加速初级壁CesA复合物(纤维素合酶复合物,CSC)的颗粒运动,从而获得长的微纤维,从而增加拟南芥转基因品系中的纤维素产量。过表达的转基因品系显示出与细胞生长和增殖有关的基因表达变化,这也许可以解释转基因幼苗生长的增强。值得注意的是,三个AtCesA6Δβ样基因的过表达也增强了次级细胞壁的沉积,从而导致了转基因成熟植物中机械强度的提高和生物量的产生。因此,我们建议某些AtCesA基因的过表达可以提供一种生物技术方法来增加转基因植物中纤维素的合成和生物量的积累。

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