霍乱弧菌
周质间隙
生物发生
水平基因转移
胞外囊泡
舍瓦内拉
细胞生物学
细胞外
细胞外小泡
小泡
生物
微生物学
细胞质
细菌
细菌遗传学
化学
基因
细菌外膜
细胞
肠道细菌
细胞膜
细菌细胞结构
创伤弧菌
微泡
作者
Dominik Fleischhacker,Yi‐Chi Chen,Noa Sanchez Gordo,Amar Ćosić,Ratchara Kalwong,Leo Eberl,Stefan Schild
摘要
Like other Gram-negative bacteria, Vibrio cholerae, releases bacterial extracellular vesicles (BEVs), which have documented roles along the facultative human-pathogen's lifecycle. Most studies have focused on BEVs released its outermost surface under non-stressed conditions, which are mainly composed of outer membrane and periplasmic components. Herein, we comprehensively characterise stress-induced BEVs released upon exposure to the SOS response-inducing genotoxin mitomycin C or the antimicrobial emulsifier bile, which V. cholerae faces during intestinal colonisation. Compared to control BEVs from non-stressed V. cholerae cultures, MMC and bile trigger the release of a high number of enlarged, nucleic acid-rich BEVs with increased cytoplasmic content, a hallmark of cell lysis-derived BEVs. Despite similarities between stress-induced BEVs, our results indicate stressor-specific BEV compositions and divergent SOS response activation, suggesting different biogenesis routes and subtypes of stress-induced BEVs. Stress-induced BEVs promote horizontal gene transfer (HGT) of a chromosomal antibiotic resistance cassette during laboratory cultivation and intestinal colonisation. We provide novel insights in BEV-mediated HGT, which is independent of the PilA-pilus of the competence machinery, but requires the periplasmic ComEA complex and downstream components. BEV-mediated HGT is facilitated under intestinal conditions, that is, exposure to bile and proteases, which highlights the potential of genetic exchange via BEVs during host colonisation.
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