Billaud Mélanie, Seneca François, Tambutté Eric, Czerucka Dorota
Biomedical Department, Scientific Center of Monaco, Monaco, Monaco.
Marine Biology Department, Scientific Center of Monaco, Monaco, Monaco.
Front Microbiol. 2022 Mar 8;13:840628. doi: 10.3389/fmicb.2022.840628. eCollection 2022.
Climate change driven seawater temperature (SWT) increases results in greater abundance and geographical expansion of marine pathogens, among which (Vp) causes serious economic and health issues. In addition, plastic pollution in the ocean constitutes a vector for harmful pathogens dissemination. We investigate the effect of elevated SWT on the expression of genes implicated in adhesion and biofilm formation on abiotic surfaces in the clinical Vp strain RIMD2210633, which expresses hemolysins. Among the genes studied, the multivalent adhesion molecule-7 and the GlcNAc-binding protein A were involved in the adhesion of Vp to abiotic and biotic surfaces, whereas the type IV pili, the mannose-sensitive hemagglutinin, and the chitin-regulated pilins facilitate attachment and biofilm formation. Data presented here show that at 21°C, Vp is still viable but does not either proliferate or express the virulence factors studied. Interestingly, at 27°C and as early as 1 h of incubation, all factors are transiently expressed in free-living bacteria only and even more upregulated at 31°C. These results clearly show that increased SWT has an important impact on the adhesion properties of free-living Vp to plastic support and thus emphasize the role of climate change in the spread of this pathogenic bacteria.
气候变化导致海水温度(SWT)上升,致使海洋病原体数量增加且地理分布范围扩大,其中副溶血性弧菌(Vp)引发了严重的经济和健康问题。此外,海洋中的塑料污染成为有害病原体传播的媒介。我们研究了海水温度升高对临床Vp菌株RIMD2210633(该菌株表达溶血素)中与非生物表面黏附及生物膜形成相关基因表达的影响。在所研究的基因中,多价黏附分子-7和N-乙酰葡糖胺结合蛋白A参与了Vp对非生物和生物表面的黏附,而IV型菌毛、甘露糖敏感血凝素和几丁质调节菌毛则促进了细菌的附着和生物膜形成。此处呈现的数据表明,在21°C时,Vp仍具有活力,但既不增殖也不表达所研究的毒力因子。有趣的是,在27°C时,早在培养1小时后,所有因子仅在自由生活的细菌中短暂表达,且在31°C时表达上调更为明显。这些结果清楚地表明,海水温度升高对自由生活的Vp与塑料载体的黏附特性具有重要影响,从而强调了气候变化在这种病原菌传播中的作用。