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RpoS sigma 因子在微小拟杆菌的适应和毒力中起介导作用。

RpoS sigma factor mediates adaptation and virulence in Vibrio mimicus.

机构信息

College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China.

College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 3):135307. doi: 10.1016/j.ijbiomac.2024.135307. Epub 2024 Sep 3.

Abstract

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 HO, 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 facilitating selection of molecular targets for future prevention strategies against V. mimicus.

摘要

副 σ 因子 RpoS 作为许多细菌物种应激和毒力反应的调节剂。威克汉姆拟态弧菌是一种重要的机会性病原体,给水产养殖业造成了巨大损失。然而,RpoS 在威克汉姆拟态弧菌中的确切作用尚不清楚。在本研究中,通过基因同源重组构建了威克汉姆拟态弧菌 rpoS 缺失突变株,并研究了表型和转录变化,以确定 RpoS 的功能。与野生型菌株相比,ΔrpoS 菌株的生长、运动、生物膜形成、溶血活性和致病性能力显著受损。ΔrpoS 菌株的静止期细胞对 HO、热、乙醇和饥饿应激的耐受性低于野生型菌株。转录组分析表明,rpoS 参与了各种细胞过程,特别是细菌鞭毛的合成和组装、膜的合成和组装以及对各种刺激的反应。表型和 RNA-seq 分析表明,RpoS 是威克汉姆拟态弧菌生物膜形成、应激抗性和致病性所必需的。此外,β-半乳糖苷酶活性表明 rpoS 是 flgK、fliA、cheA、mcpH mRNA 最佳转录所必需的。这些结果为 rpoS/RpoS 的功能和调控网络提供了重要的见解,从而提高了我们对威克汉姆拟态弧菌的理解,并为未来针对威克汉姆拟态弧菌的预防策略选择分子靶标提供了帮助。

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