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蛋白质组分析揭示了[具体生物]在受到[某种因素]挑战时的生存工具。 (注:原文中部分关键信息缺失,以上是基于现有信息尽量完整的翻译)

Proteome Analyses Reveal 's Survival Tools When Challenged by NZ.

作者信息

Zaman Nazia R, Kumar Bhoj, Nasrin Zulia, Islam Mohammad R, Maiti Tushar K, Khan Haseena

机构信息

Department of Biochemistry and Molecular Biology, Faculty of Biological Sciences, University of Dhaka, Dhaka 1000, Bangladesh.

Functional Proteomics Laboratory, Regional Centre for Biotechnology, NCR Biotech Science Cluster, Faridabad 121001, India.

出版信息

ACS Omega. 2020 Jan 15;5(3):1352-1362. doi: 10.1021/acsomega.9b01870. eCollection 2020 Jan 28.

Abstract

A phytopathogenic fungus, , which infects a wide range of plants, is an important consideration in agronomy. A jute endophytic bacterium, NZ, was found to have a promising effect in controlling the fungus in in vitro culture conditions. Using the iTRAQ LC-MS/MS method for quantitative proteomics study, an analysis of the whole proteome of with or without NZ challenge identified 2204 different proteins, of which 137 were found to have significant deviation in expression. Kyoto encyclopedia of genes and genomes pathway analysis identified most of the upregulated proteins to be functionally related to energy production (26.11%), as well as defense and stress response (23.45%), while there was significant downregulation in oxidative stress protection pathways (42.61%), growth and cell wall integrity (30.95%), and virulence (23.81%). Findings of this study suggest the development of a battle when the phytopathogen encounters the bacterium. NZ manages to arrest the growth of the fungus and decrease its pathogenicity, but the fungus apparently survives under "hibernating" conditions by upregulating its energy metabolism. This first ever proteomic study of will go a long way in understanding and developing strategies for its effective control.

摘要

一种能感染多种植物的植物病原真菌是农学领域的一个重要研究对象。一种黄麻内生细菌NZ在体外培养条件下对该真菌具有显著的控制效果。采用iTRAQ LC-MS/MS定量蛋白质组学方法,对有无NZ挑战下该真菌的全蛋白质组进行分析,共鉴定出2204种不同蛋白质,其中137种蛋白质表达有显著差异。京都基因与基因组百科全书通路分析表明,上调的蛋白质大多与能量产生(26.11%)以及防御和应激反应(23.45%)功能相关,而氧化应激保护通路(42.61%)、生长和细胞壁完整性(30.95%)以及毒力(23.81%)则有显著下调。本研究结果表明,当植物病原体遇到该细菌时会展开一场较量。NZ成功抑制了真菌的生长并降低了其致病性,但真菌显然通过上调能量代谢在“休眠”状态下存活。这项首次对该真菌进行的蛋白质组学研究将对理解并制定其有效控制策略大有帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8778/6990438/31b23920d413/ao9b01870_0007.jpg

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