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T6SS vgrG 基因参与鮰爱德华氏菌致病性。

The involvement of the T6SS vgrG gene in the pathogenicity of Pseudomonas plecoglossicida.

机构信息

Fisheries College, Jimei University, Xiamen, China.

Key Laboratory of Aquatic Functional Feed and Environmental Regulation of Fujian Province, Fujian Dabeinong Aquatic Sci. & Tech. Co., Ltd, Zhangzhou, China.

出版信息

J Fish Dis. 2023 Oct;46(10):1097-1108. doi: 10.1111/jfd.13829. Epub 2023 Jul 3.

Abstract

Pseudomonas plecoglossicida, the causative agent of white spot disease of large yellow croaker, has caused serious economic losses to the aquaculture industry. The type VI secretion system (T6SS) is a significant virulence system widely distributed among Gram-negative bacteria. VgrG, a structural and core component of T6SS, is crucial to the function of T6SS. To explore the biological profiles mediated by vgrG gene and its effects on the pathogenicity of P. plecoglossicida, the vgrG gene deletion (ΔvgrG) strain and complementary (C-ΔvgrG) strain were constructed and the differences in pathogenicity and virulence-related characteristics between different strains were analysed. The results showed that vgrG gene deletion significantly affected the virulence-related characteristics of P. plecoglossicida, including chemotaxis, adhesion, and biofilm formation. In addition, the LD of ΔvgrG strain was nearly 50-fold higher than that of the NZBD9 strain. Transcriptome data analysis suggested that the vgrG gene may affect the virulence of P. plecoglossicida by regulating the quorum sensing pathway to inhibit the secretion of virulence factors and affect biofilm formation. Besides, deletion of the vgrG gene may reduce bacterial pathogenicity by affecting bacterial signal transduction processes and the ability to adapt to chemotactic substances.

摘要

鮰爱德华氏菌是大黄鱼白点病的病原体,给水产养殖业造成了严重的经济损失。 型 VI 分泌系统(T6SS)是一种广泛分布于革兰氏阴性菌中的重要毒力系统。VgrG 是 T6SS 的结构和核心组成部分,对于 T6SS 的功能至关重要。为了探讨 vgrG 基因介导的生物学特性及其对鮰爱德华氏菌致病性的影响,构建了 vgrG 基因缺失(ΔvgrG)株和互补(C-ΔvgrG)株,并分析了不同菌株在致病性和毒力相关特性方面的差异。结果表明,vgrG 基因缺失显著影响了鮰爱德华氏菌的毒力相关特性,包括趋化性、黏附性和生物膜形成能力。此外,ΔvgrG 株的半数致死量(LD50)比 NZBD9 株高近 50 倍。转录组数据分析表明,vgrG 基因可能通过调控群体感应途径来抑制毒力因子的分泌并影响生物膜形成,从而影响鮰爱德华氏菌的毒力。此外,vgrG 基因的缺失可能通过影响细菌信号转导过程和对趋化物质的适应能力来降低细菌的致病性。

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