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Arabidopsis myrosinases link the glucosinolate-myrosinase system and the cuticle

机译:拟南芥硫代氨酸酶链接葡萄糖苷 - 肌肉素系统和角质层

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Both physical barriers and reactive phytochemicals represent two important components of a plant's defence system against environmental stress. However, these two defence systems have generally been studied independently. Here, we have taken an exclusive opportunity to investigate the connection between a chemical-based plant defence system, represented by the glucosinolate-myrosinase system, and a physical barrier, represented by the cuticle, using Arabidopsis myrosinase (thioglucosidase; TGG) mutants. The tgg1, single and tgg1 tgg2 double mutants showed morphological changes compared to wild-type plants visible as changes in pavement cells, stomatal cells and the ultrastructure of the cuticle. Extensive metabolite analyses of leaves from tgg mutants and wild-type Arabidopsis plants showed altered levels of cuticular fatty acids, fatty acid phytyl esters, glucosinolates, and indole compounds in tgg single and double mutants as compared to wild-type plants. These results point to a close and novel association between chemical defence systems and physical defence barriers.
机译:物理障碍和反应性植物化学物质代表植物防御环境压力的两个重要组成部分。然而,这两种防御系统通常是独立研究的。在这里,我们采取了专用的机会来研究由葡萄糖苷 - 霉菌酶系统的化学植物防御系统之间的连接,以及使用拟南芥肌腱酶(硫葡糖苷酶; TGG)突变体来表示由角质苷代表的物理障碍。与人行道细胞,气孔细胞和角质层超微结构的变化可见的野生型植物相比,TGG1,单和TGG1 TGG2双突变体显示形态变化。与野生型植物相比,来自TGG突变体和野生型拟南芥植物的叶片的广泛代谢分析显示出改变的脂肪酸,脂肪酸植物,葡萄糖素,和吲哚化合物,与野生型植物相比。这些结果指出了化学防御系统和物理防御障碍之间的密切和新的关联。

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