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Brachypodium distachyon as a model plant toward improved biofuel crops: Search for secreted proteins involved in biogenesis and disassembly of cell wall polymers

机译:短枝曲霉(Brachypodium distachyon)作为改良生物燃料作物的典范植物:寻找与生物发生和细胞壁聚合物分解有关的分泌蛋白

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摘要

Polysaccharides make up about 75% of plant cell walls and can be broken down to produce sugar substrates (saccharification) from which a whole range of products can be obtained, including bioethanol. Cell walls also contain 5-10% of proteins, which could be used to tailor them for agroindustrial uses. Here we present cell wall proteomics data of Brachypodium distachyon, a model plant for temperate grasses. Leaves and culms were analyzed during active growth and at mature stage. Altogether, 559 proteins were identified by LC-MS/MS and bioinformatics, among which 314 have predicted signal peptides. Sixty-three proteins were shared by two organs at two developmental stages where they could play housekeeping functions. Differences were observed between organs and stages of development, especially at the level of glycoside hydrolases and oxidoreductases. Differences were also found between the known cell wall proteomes of B. distachyon, Oryza sativa, and the Arabidopsis thaliana dicot. Three glycoside hydrolases could be immunolocalized in cell walls using polyclonal antibodies against proteotypic peptides. Organ-specific expression consistent with proteomics results could be observed as well as cell-specific localization. Moreover, the high number of proteins of unknown function in B. distachyon cell wall proteomes opens new fields of research for monocot cell walls.
机译:多糖占植物细胞壁的约75%,可以分解成糖底物(糖化),从中可以得到包括生物乙醇在内的所有产品。细胞壁还含有5-10%的蛋白质,可用于定制它们以用于农用工业。在这里,我们介绍了Brachypodium distachyon(一种温带草的模型植物)的细胞壁蛋白质组学数据。在活跃的生长过程中和成熟阶段对叶片和茎进行分析。 LC-MS / MS和生物信息学共鉴定出559种蛋白质,其中314种具有预测的信号肽。在两个发育阶段,两个器官共有63种蛋白质,它们可以发挥管家功能。在器官和发育阶段之间观察到差异,尤其是在糖苷水解酶和氧化还原酶水平上。在已知的B. distachyon,水稻(Oryza sativa)和拟南芥双子叶植物的细胞壁蛋白质组之间也发现了差异。使用针对蛋白型肽的多克隆抗体,可以将三种糖苷水解酶免疫定位在细胞壁中。可以观察到与蛋白质组学结果一致的器官特异性表达以及细胞特异性定位。此外,在地衣芽孢杆菌细胞壁蛋白质组中大量未知功能的蛋白质为单子叶植物细胞壁开辟了新的研究领域。

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