RpoS sigma factor mediates adaptation and virulence in Vibrio mimicus

RPO 西格玛因子 生物 适应(眼睛) 毒力 微生物学 遗传学 毒力因子 弧菌 基因 基因表达 细菌 发起人 神经科学
作者
Ziyan Jiang,Anting Chen,Zhen Chen,Jingwen Xu,Xiaojian Gao,Qun Jiang,Xiaojun Zhang
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:279 (Pt 3): 135307-135307 被引量:1
标识
DOI:10.1016/j.ijbiomac.2024.135307
摘要

The alternative sigma factor RpoS functions as a regulator of stress and virulence response in numerous bacterial species. Vibrio mimicus is a critical opportunistic pathogen causing huge losses to aquaculture. However, the exact role of RpoS in V. mimicus remains unclear. In this study, rpoS deletion mutant of V. mimicus was constructed through allelic exchange and the phenotypic and transcriptional changes were investigated to determine the function of RpoS. The abilities of growth, motility, biofilm production, hemolytic activity and pathogenicity were significantly impaired in ΔrpoS strain. Stationary-phase cells of ΔrpoS strain showed lower tolerance to H2O2, heat, ethanol, and starvation stress than the wild-type strain. Transcriptome analyses revealed the involvement of rpoS in various cellular processes, notably bacterial-type flagellum synthesis and assembly, membrane synthesis and assembly and response to various stimuli. Phenotypic and RNA-seq analysis revealed that RpoS is required for biofilm formation, stress resistance, and pathogenicity in V. mimicus. Furthermore, β-galactosidase activity showed that rpoS is essential for optimal transcription of the flgK, fliA, cheA, mcpH mRNA. These results offer significant insight into the function and regulatory network of rpoS/RpoS, thereby improving our understanding and facilitate selection of molecular targets for future prevention strategies against V. mimicus.
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