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Advances in proteomic technologies and their scope of application in understanding plant-pathogen interactions

机译:蛋白质组学技术及其在理解植物病原体相互作用中的应用范围

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Proteomics, one of the major tools of 'omics' is evolving phenomenally since the development and application of two-dimensional gel electrophoresis coupled with mass spectrometry at the end of twentieth century. However, the adoption and application of advanced proteomic technologies in understanding plant-pathogen interactions are far less, when compared to their application in other related fields of systems biology. Hence, this review is diligently focused on the advances in various proteomic approaches and their gamut of applications in different facets of phyto-pathoproteomics. Especially, the scope and application of proteomics in understanding fundamental concepts of plant-pathogen interactions such as identification of pathogenicity determinants (effector proteins), disease resistance proteins (resistance and pathogenesis-related proteins) and their regulation by post-translational modifications have been portrayed. This review, for the first time, presents a critical appraisal of various proteomic applications by assessing all phyto-pathoproteomics-related research publications that were published in peer-reviewed journals, during the period 2000-2016. This assessment has revealed the present status and contribution of proteomic applications in different categories of phyto-pathoproteomics, namely, cellular components, host-pathogen interactions, model and non-model plants, and utilization of different proteomic approaches. Comprehensively, the analysis highlights the burgeoning application of global proteome approaches in various crop diseases, and demand for acceleration in deploying advanced proteomic technologies to thoroughly comprehend the intricacies of complex and rapidly evolving plant-pathogen interactions.
机译:蛋白质组学,“OMICS”的主要工具之一是在二十世纪末与质谱相连的二维凝胶电泳的发展和应用。然而,与他们在系统生物学的其他相关领域的应用相比,在理解植物病原体相互作用时,采用和应用了高级蛋白质组学技术。因此,本综述努力地专注于各种蛋白质组学方法的进展及其在植物 - 病理蛋白质组织不同方面的应用范围。特别地,描绘了蛋白质组学在理解植物病原体相互作用的基本概念,例如致病性决定因素(效应蛋白),抗病蛋白(抗性和发病相关蛋白)的基本概念,并描绘了通过翻译后修改的调节。本次审查首次通过评估在2000-2016期间在同行评审期刊上发表的所有植物病毒组论有关的研究出版物,这一综述提出了各种蛋白质组织的批判性评估。该评估揭示了蛋白质组学应用在不同类别的植物病毒组织中的现状和贡献,即细胞组分,宿主 - 病原体相互作用,模型和非模型植物,以及不同蛋白质组学方法的利用。全面地,分析突出了全球蛋白质组方法在各种作物疾病中的蓬勃发展,以及对部署先进蛋白质组织的加速要求,以彻底理解复杂和快速发展的植物病原体相互作用的复杂性。

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