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首页> 外文期刊>Journal of proteome research >Label-free Proteomic Reveals that Cowpea Severe Mosaic Virus Transiently Suppresses the Host Leaf Protein Accumulation During the Compatible Interaction with Cowpea (Vigna unguiculata [L.] Walp.)
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Label-free Proteomic Reveals that Cowpea Severe Mosaic Virus Transiently Suppresses the Host Leaf Protein Accumulation During the Compatible Interaction with Cowpea (Vigna unguiculata [L.] Walp.)

机译:无标签的蛋白质组学揭示了Cow豆严重花叶病毒在与Cow豆(Vigna unguiculata [L.] Walp。)相互作用期间短暂抑制宿主叶片蛋白质的积累。

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摘要

Viruses are important plant pathogens that threaten diverse crops worldwide. Diseases caused by Cowpea severe mosaic virus (CPSMV) have drawn attention because of the serious damages they cause to economically important crops including cowpea. This work was undertaken to quantify and identify the responsive proteins of a susceptible cowpea genotype infected with CPSMV, in comparison with mock-inoculated controls, using label-free quantitative proteomics and databanks, aiming at providing insights on the molecular basis of this compatible interaction. Cowpea leaves were mock- or CPSMV-inoculated and 2 and 6 days later proteins were extracted and analyzed. More than 3000 proteins were identified (data available via ProteomeXchange, identifier PXD005025) and 75 and 55 of them differentially accumulated in response to CPSMV, at 2 and 6 DAI, respectively. At 2 DAI, 76% of the proteins decreased in amount and 24% increased. However, at 6 DAT, 100% of the identified proteins increased. Thus, CPSMV transiently suppresses the synthesis of proteins involved particularly in the redox homeostasis, protein synthesis, defense, stress, RNA/DNA metabolism, signaling, and other functions, allowing viral invasion and spread in cowpea tissues.
机译:病毒是重要的植物病原体,威胁着世界各地的多种作物。 Cow豆严重花叶病毒(CPSMV)引起的疾病引起了人们的注意,因为它们对包括cow豆在内的重要经济作物造成了严重损害。这项工作旨在使用无标记的定量蛋白质组学和数据库与模拟接种的对照进行定量和鉴定感染CPSMV的易感cow豆基因型的响应蛋白,旨在提供有关这种兼容相互作用的分子基础的见解。对mock豆叶片进行模拟或CPSMV接种,并在2天和6天后提取蛋白质并进行分析。鉴定出3000多种蛋白质(可通过ProteomeXchange获得的数据,标识符PXD005025),其中75和55分别响应CPSMV在2 DAI和6 DAI下差异积累。在2 DAI时,蛋白质数量减少了76%,蛋白质增加了24%。但是,在6 DAT时,鉴定出的蛋白质100%增加。因此,CPSMV瞬时抑制蛋白质的合成,特别是参与氧化还原稳态,蛋白质合成,防御,应激,RNA / DNA代谢,信号传导和其他功能的蛋白质合成,从而使病毒入侵并在spread豆组织中传播。

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