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Modification of plant cell wall structure accompanied by enhancement of saccharification efficiency using a chemical lasalocid sodium

机译:修饰植物细胞壁结构同时使用化学杀虫剂钠提高糖化效率

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摘要

The cell wall is one major determinant of plant cell morphology, and is an attractive bioresource. Here, we report a novel strategy to modify plant cell wall property by small molecules. Lasalocid sodium (LS) was isolated by chemical screening to identify molecules that affect the cell morphology of tobacco BY-2 cells. LS treatment led to an increase in cell wall thickness, whilst the quantity and sugar composition of the cell wall remained unchanged in BY-2 cells. The chemical also disordered the cellular arrangement of hypocotyls of Arabidopsis plants, resulting in a decrease in hypocotyl length. LS treatment enhanced enzymatic saccharification efficiency in both BY-2 cells and Arabidopsis plants. Microarray analysis on Arabidopsis showed that exposure to LS upregulated type III peroxidase genes, of which some are involved in lignin biogenesis, and jasmonic acid response genes, and phloroglucinol staining supported the activation of lignification by the LS treatment. As jasmonic acid-mediated lignification is a typical reaction to cell wall damage, it is possible that LS induces cell wall loosening, which can trigger cell wall damage response. Thus, LS is a unique chemical for modification of cell wall and morphology through changes in cell wall architecture.
机译:细胞壁是植物细胞形态的主要决定因素,并且是有吸引力的生物资源。在这里,我们报告了一种通过小分子修饰植物细胞壁特性的新策略。通过化学筛选分离出拉索洛西钠(LS),以鉴定影响烟草BY-2细胞细胞形态的分子。 LS处理导致细胞壁厚度增加,而BY-2细胞中细胞壁的数量和糖成分保持不变。该化学物质还使拟南芥植物下胚轴的细胞排列紊乱,导致下胚轴长度的减少。 LS处理提高了BY-2细胞和拟南芥植物的酶促糖化效率。对拟南芥的微阵列分析表明,暴露于LS会上调III型过氧化物酶基因,其中一些与木质素的生物发生有关,茉莉酸响应基因和间苯三酚染色支持通过LS处理激活木质化。由于茉莉酸介导的木质化是对细胞壁损伤的典型反应,因此LS可能诱导细胞壁松弛,从而触发细胞壁损伤反应。因此,LS是通过改变细胞壁结构来修饰细胞壁和形态的独特化学物质。

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