Department of Biosciences and Bioengineering, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, 247667, India.
Centre for Computational Biology & Bioinformatics, Central University of Himachal Pradesh, Kangra, Himachal Pradesh, 176206, India.
Arch Microbiol. 2023 Jul 29;205(8):298. doi: 10.1007/s00203-023-03638-1.
Fusarium oxysporum f. sp. lycopersici is a soil-borne phytopathogenic species which causes vascular wilt disease in the Solanum lycopersicum (tomato). Due to the continuous competition for zinc usage by Fusarium and its host during infection makes zinc-binding proteins a hotspot for focused investigation. Zinc-binding effector proteins are pivotal during the infection process, working in conjunction with other essential proteins crucial for its biological activities. This work aims at identifying and analysing zinc-binding proteins and zinc-binding proteins effector candidates of Fusarium. We have identified three hundred forty-six putative zinc-binding proteins; among these proteins, we got two hundred and thirty zinc-binding proteins effector candidates. The functional annotation, subcellular localization, and Gene Ontology analysis of these putative zinc-binding proteins revealed their probable role in wide range of cellular and biological processes such as metabolism, gene expression, gene expression regulation, protein biosynthesis, protein folding, cell signalling, DNA repair, and RNA processing. Sixteen proteins were found to be putatively secretory in nature. Eleven of these were putative zinc-binding protein effector candidates may be involved in pathogen-host interaction during infection. The information obtained here may enhance our understanding to design, screen, and apply the zinc-metal ion-based antifungal agents to protect the S. lycopersicum and control the vascular wilt caused by F. oxysporum.
尖镰孢番茄专化型是一种土传植物病原真菌,可引起番茄(Solanum lycopersicum)维管束萎蔫病。由于在感染过程中尖镰孢及其宿主对锌的持续竞争,锌结合蛋白成为研究的热点。锌结合效应蛋白在感染过程中起着至关重要的作用,与其他对其生物活性至关重要的必需蛋白协同作用。本研究旨在鉴定和分析尖镰孢的锌结合蛋白和锌结合蛋白效应候选物。我们鉴定了 346 个潜在的锌结合蛋白;在这些蛋白中,我们得到了 230 个锌结合蛋白效应候选物。这些假定的锌结合蛋白的功能注释、亚细胞定位和基因本体分析表明,它们可能在广泛的细胞和生物学过程中发挥作用,如代谢、基因表达、基因表达调控、蛋白质生物合成、蛋白质折叠、细胞信号转导、DNA 修复和 RNA 加工。发现有 16 种蛋白具有潜在的分泌特性。其中 11 种可能与感染过程中病原菌与宿主的相互作用有关。这里获得的信息可能有助于我们设计、筛选和应用锌金属离子基抗真菌剂来保护番茄并控制由尖镰孢引起的维管束萎蔫病。