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Modifications of fungal membrane proteins profile under pathogenicity induction: A proteomic analysis of Botrytis cinerea membranome

机译:致病性诱导下真菌膜蛋白谱的修饰:灰葡萄孢菌膜组的蛋白质组学分析

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Botrytis cinerea is a model fungus for the study of phytopathogenicity that exhibits a wide arsenal of tools to infect plant tissues. Most of these factors are related to signal transduction cascades, in which membrane proteins play a key role as a bridge between environment and intracellular molecular processes. This work describes the first description of the membranome of Botrytis under different pathogenicity conditions induced by different plant-based elicitors: glucose and tomato cell wall (TCW). A discovery proteomics analysis of membrane proteins was carried out by mass spectrometry. A total of 2794 proteins were successfully identified, 46% of them were classified as membrane proteins based on the presence of transmembrane regions and lipidation. Further analyses showed significant differences in the membranome composition depending on the available carbon source: 804 proteins were exclusively identified when the fungus was cultured with glucose as a sole carbon source, and 251 proteins were exclusively identified with TCW. Besides, among the 1737 common proteins, a subset of 898 proteins presented clear differences in their abundance. GO enrichment and clustering interaction analysis revealed changes in the composition of membranome with increase of signalling function in glucose conditions and carbohydrate degradation process in TCW conditions. All MS data have been deposited in the ProteomeXchange with identifier PXD003099 (http://proteomecentral.proteomexchange.org/dataset/PXD003099).
机译:灰葡萄孢(Botrytis cinerea)是用于研究植物致病性的模型真菌,其具有广泛的感染植物组织的工具。这些因素大多数与信号转导级联有关,其中膜蛋白作为环境与细胞内分子过程之间的桥梁发挥着关键作用。这项工作描述了由不同的基于植物的引发剂:葡萄糖和番茄细胞壁(TCW)诱导的不同致病性条件下的葡萄孢菌膜组的首次描述。膜蛋白的发现蛋白质组学分析通过质谱进行。共成功鉴定出2794种蛋白质,其中46%根据跨膜区域的存在和脂化作用被分类为膜蛋白质。进一步的分析表明,取决于可用的碳源,膜组的组成存在显着差异:当真菌用葡萄糖作为唯一碳源培养时,仅鉴定了804种蛋白质,而使用TCW仅鉴定了251种蛋白质。此外,在1737种常见蛋白中,有898种蛋白的一个子集在丰度上存在明显差异。 GO富集和聚类相互作用分析揭示了膜组的组成随葡萄糖条件下信号功能的增加和TCW条件下碳水化合物降解过程的变化而变化。所有MS数据均已存储在ProteomeXchange中,其标识符为PXD003099(http://proteomecentral.proteomexchange.org/dataset/PXD003099)。

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