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The Modification of Cell Wall Properties by Expression of Recombinant Resilin in Transgenic Plants

机译:通过在转基因植物中表达重组植物的细胞壁性质改性

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Abstract Plant tissue is composed of many different types of cells. Plant cells required to withstand mechanical pressure, such as vessel elements and fibers, have a secondary cell wall consisting of polysaccharides and lignin, which strengthen the cell wall structure and stabilize the cell shape. Previous attempts to alter the properties of the cell wall have mainly focused on reducing the amount of lignin or altering its structure in order to ease its extraction from raw woody materials for the pulp and paper and biorefinery industries. In this work, we propose the in vivo modification of the cell wall structure and mechanical properties by the introduction of resilin, an elastic protein that is able to crosslink with lignin monomers during cell wall synthesis. The effects of resilin were studied in transgenic eucalyptus plants. The protein was detected within the cell wall and its expression led to an increase in the elastic modulus of transgenic stems. In addition, transgenic stems displayed a higher yield point and toughness, indicating that they were able to absorb more energy before breaking.
机译:摘要植物组织由许多不同类型的细胞组成。需要承受机械压力的植物细胞,例如容器元件和纤维,具有由多糖和木质素组成的二次细胞壁,其增强细胞壁结构并稳定细胞形状。以前的尝试改变细胞壁的性质主要集中在减少木质素的量或改变其结构,以便于从原始木质材料中提取纸浆和纸张和生物料理产业。在这项工作中,我们提出了通过引入Resilin的细胞壁结构和机械性能的体内改性,这是能够在细胞壁合成期间与木质素单体交联的弹性蛋白质。在转基因桉树植物中研究了Resilin的影响。在细胞壁内检测蛋白质,其表达导致转基因茎的弹性模量的增加。此外,转基因茎显示出更高的屈服点和韧性,表明它们能够在破碎之前吸收更多的能量。

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