首页> 美国卫生研究院文献>other >AHL-lactonase expression in three marine emerging pathogenic Vibrio spp. reduces virulence and mortality in brine shrimp (Artemia salina) and Manila clam (Venerupis philippinarum)
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AHL-lactonase expression in three marine emerging pathogenic Vibrio spp. reduces virulence and mortality in brine shrimp (Artemia salina) and Manila clam (Venerupis philippinarum)

机译:AHL-内酰胺酶在三种海洋新兴病原性弧菌中的表达。降低盐水虾(卤虫)和马尼拉蛤(菲律宾V)的毒力和死亡率

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摘要

Bacterial infectious diseases produced by Vibrio are the main cause of economic losses in aquaculture. During recent years it has been shown that the expression of virulence genes in some Vibrio species is controlled by a population-density dependent gene-expression mechanism known as quorum sensing (QS), which is mediated by the diffusion of signal molecules such as N-acylhomoserine lactones (AHLs). QS disruption, especially the enzymatic degradation of signalling molecules, known as quorum quenching (QQ), is one of the novel therapeutic strategies for the treatment of bacterial infections. In this study, we present the detection of AHLs in 34 marine Vibrionaceae strains. Three aquaculture-related pathogenic Vibrio strains, V. mediterranei VibC-Oc-097, V. owensii VibC-Oc-106 and V. coralliilyticus VibC-Oc-193 were selected for further studies based on their virulence and high production of AHLs. This is the first report where the signal molecules have been characterized in these emerging marine pathogens and correlated to the expression of virulence factors. Moreover, the results of AHL inactivation in the three selected strains have been confirmed in vivo against brine shrimps (Artemia salina) and Manila clams (Venerupis philippinarum). This research contributes to the development of future therapies based on AHL disruption, the most promising alternatives for fighting infectious diseases in aquaculture.
机译:弧菌产生的细菌感染性疾病是水产养殖经济损失的主要原因。近年来,已显示某些弧菌物种中的毒力基因的表达受称为群体感应(QS)的种群密度依赖性基因表达机制的控制,该机制由信号分子(例如N-酰基高丝氨酸内酯(AHL)。 QS破坏,特别是信号传导分子的酶促降解,称为群体猝灭(QQ),是治疗细菌感染的新型治疗策略之一。在这项研究中,我们介绍了34种海洋弧菌科菌株中AHL的检测。选择了三种与水产养殖有关的致病性弧菌菌株,即V. mediterranei VibC-Oc-097,V。owensii VibC-Oc-106和C. coliliilyticus VibC-Oc-193,以其毒性和AHL的高产量为基础进行进一步研究。这是第一份报道了这些新兴海洋病原体中信号分子的特征,并与毒力因子的表达相关。此外,已在体内证实了针对盐水虾(卤虫)和马尼拉蛤(菲律宾V)的三种选定菌株中AHL灭活的结果。这项研究为基于AHL破坏的未来疗法的发展做出了贡献,而AHL破坏是对抗水产养殖传染病的最有希望的替代方法。

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