首页> 外文期刊>Proteomics >Blue Native/SDS‐PAGE and iTRAQ‐Based Chloroplasts Proteomics Analysis of Nicotiana tabacum Nicotiana tabacum Leaves Infected with M Strain of Cucumber Mosaic Virus Reveals Several Proteins Involved in Chlorosis Symptoms
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Blue Native/SDS‐PAGE and iTRAQ‐Based Chloroplasts Proteomics Analysis of Nicotiana tabacum Nicotiana tabacum Leaves Infected with M Strain of Cucumber Mosaic Virus Reveals Several Proteins Involved in Chlorosis Symptoms

机译:基于Blue Native / SDS-PAGE和ITRAQ的叶绿体蛋白质组学分析烟草烟草烟草叶片感染米黄瓜镶嵌病毒的叶片揭示了几种参与氯鱼育症状的蛋白质

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摘要

Abstract Virus infection in plants involves necrosis, chlorosis, and mosaic. The M strain of cucumber mosaic virus (M‐CMV) has six distinct symptoms: vein clearing, mosaic, chlorosis, partial green recovery, complete green recovery, and secondary mosaic. Chlorosis indicates the loss of chlorophyll which is highly abundant in plant leaves and plays essential roles in photosynthesis. Blue native/SDS‐PAGE combined with mass spectrum was performed to detect the location of virus, and proteomic analysis of chloroplast isolated from virus‐infected plants was performed to quantify the changes of individual proteins in order to gain a global view of the total chloroplast protein dynamics during the virus infection. Among the 438 proteins quantified, 33 showed a more than twofold change in abundance, of which 22 are involved in the light‐dependent reactions and five in the Calvin cycle. The dynamic change of these proteins indicates that light‐dependent reactions are down‐accumulated, and the Calvin cycle was up‐accumulated during virus infection. In addition to the proteins involved in photosynthesis, tubulin was up‐accumulated in virus‐infected plant, which might contribute to the autophagic process during plant infection. In conclusion, this extensive proteomic investigation on intact chloroplasts of virus‐infected tobacco leaves provided some important novel information on chlorosis mechanisms induced by virus infection.
机译:植物中的抽象病毒感染涉及坏死,萎黄和马赛克。 M株黄黄瓜镶嵌病毒(M-CMV)具有六种不同的症状:静脉清除,马赛克,萎黄,部分绿色回收,完全绿色回收和二级马赛克。氯化表明植物叶中高度丰富的叶绿素的损失,并在光合作用中发挥基本作用。进行蓝色天然/ SDS-PAGE与质谱相结合以检测病毒的位置,并进行从病毒感染植物中分离的叶绿体的蛋白质组学分析,以量化单个蛋白质的变化,以获得总叶绿体的全球视图病毒感染过程中的蛋白质动力学。在量化的438个蛋白质中,33显示了大量的大量变化,其中22涉及光依赖性反应和钙氏循环中的五个。这些蛋白质的动态变化表明,逐渐累积的反应反应,并且在病毒感染期间累积了钙素循环。除了参与光合作用的蛋白质外,管蛋白在病毒感染植物中累积,这可能在植物感染期间有助于自噬过程。总之,这种广泛的蛋白质组学研究了病毒感染的烟草的完整叶绿体,提供了一些关于病毒感染诱导的氯鱼杨机制的重要信息。

著录项

  • 来源
    《Proteomics》 |2018年第2期|共13页
  • 作者单位

    Institute of Plant QuarantineChinese Academy of Inspection and QuarantineBeijing P. R. China;

    Guangxi Entry‐Exit Inspection and Quarantine BureauNanning Guangxi P. R. China;

    Institute of Plant QuarantineChinese Academy of Inspection and QuarantineBeijing P. R. China;

    Institute of Plant QuarantineChinese Academy of Inspection and QuarantineBeijing P. R. China;

    Animal and Plant and Food Testing CenterTianjin Entry Exit Inspection and Quarantine BureauTianjin;

    Institute of Plant QuarantineChinese Academy of Inspection and QuarantineBeijing P. R. China;

    Institute of Plant QuarantineChinese Academy of Inspection and QuarantineBeijing P. R. China;

    Institute of Plant QuarantineChinese Academy of Inspection and QuarantineBeijing P. R. China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    chloroplast proteins; chlorosis; cucumber mosaic virus; iTRAQ; photosynthesis;

    机译:叶绿体蛋白;氯化;黄瓜马赛克病毒;ITRAQ;光合作用;

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