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Microbial Interactions in Plants: Perspectives and Applications of Proteomics

机译:植物的微生物相互作用:蛋白质组学的观点和应用

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摘要

The structure and function of proteins involved in plant-microbe interactions is investigated through large-scale proteomics technology in a complex biological sample. Since the whole genome sequences are now available for several plant species and microbes, proteomics study has become easier, accurate and huge amount of data can be generated and analyzed during plant-microbe interactions. Proteomics approaches are highly important and relevant in many studies and showed that only genomics approaches are not sufficient enough as much significant information are lost as the proteins and not the genes coding them are final product that is responsible for the observed phenotype. Novel approaches in proteomics are developing continuously enabling the study of the various aspects in arrangements and configuration of proteins and its functions. Its application is becoming more common and frequently used in plant-microbe interactions with the advancement in new technologies. They are more used for the portrayal of cell and extracellular destructiveness and pathogenicity variables delivered by pathogens. This distinguishes the protein level adjustments in host plants when infected with pathogens and advantageous partners. This review provides a brief overview of different proteomics technology which is currently available followed by their exploitation to study the plant-microbe interaction.
机译:通过在复杂的生物样品中的大规模蛋白质组学技术研究了植物微生物相互作用的蛋白质的结构和功能。由于全基因组序列现在可用于几种植物物种和微生物,因此蛋白质组学研究变得更容易,准确,并且在植物微生物相互作用期间可以产生和分析大量数据。蛋白质组学方法在许多研究中具有非常重要的和相关性,并且表明只有基因组学方法没有足够的方法,并且由于蛋白质而丧失,并且不是编码它们的基因是负责观察到的表型的最终产品。蛋白质组学的新方法正在持续开发,从而能够研究蛋白质的布置和配置的各个方面及其功能。其应用在与新技术的进步方面的植物微生物相互作用中变得越来越常见。它们更适用于细胞的描绘和病原体递送的细胞内破坏性和致病性变量。当感染病原体和有利的伴侣时,这将蛋白质水平调节区分为宿主植物。该审查简要概述了目前可用的不同蛋白质组学技术,然后进行其利用研究植物微生物相互作用。

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