首页> 外文期刊>Diseases of Aquatic Organisms >In vitro quenching of fish pathogen Edwardsiella tarda AHL production using marine bacterium Tenacibaculum sp. strain 20J cell extracts.
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In vitro quenching of fish pathogen Edwardsiella tarda AHL production using marine bacterium Tenacibaculum sp. strain 20J cell extracts.

机译:使用海洋细菌Tenacibaculum sp。对鱼病原体爱德华氏爱德华氏菌AHL生产进行体外淬灭。株20J细胞提取物。

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摘要

Quorum quenching (QQ) has become an interesting alternative for solving the problem of bacterial antibiotic resistance, especially in the aquaculture industry, since many species of fish-pathogenic bacteria control their virulence factors through quorum sensing (QS) systems mediated by N-acylhomoserine lactones (AHLs). In a screening for bacterial strains with QQ activity in different marine environments, Tenacibaculum sp. strain 20J was identified and selected for its high degradation activity against a wide range of AHLs. In this study, the QQ activity of live cells and crude cell extracts (CCEs) of strain 20J was characterized and the possibilities of the use of CCEs of this strain to quench the production of AHLs in cultures of the fish pathogen Edwardsiella tarda ACC35.1 was explored. E. tarda ACC35.1 produces N-hexanoyl-L-homoserine lactone (C6-HSL) and N-oxohexanoyl-L-homoserine lactone (OC6-HSL). This differs from profiles registered for other E. tarda strains and indicates an important intra-specific variability in AHL production in this species. The CCEs of strain 20J presented a wide-spectrum QQ activity and, unlike Bacillus thuringiensis serovar Berliner ATCC10792 CCEs, were effective in eliminating the AHLs produced in E. tarda ACC35.1 cultures. The fast and wide-spectrum AHL-degradation activity shown by this member of the Cytophaga-Flexibacter-Bacteroidetes group consolidates this strain as a promising candidate for the control of AHL-based QS pathogens, especially in the marine fish farming industry.
机译:由于许多鱼类致病细菌通过N-酰基高丝氨酸内酯介导的群体感应(QS)系统控制其毒力因子,群体淬灭(QQ)已成为解决细菌对抗生素耐药性问题的有趣替代方法,尤其是在水产养殖业中(AHL)。在筛选不同海洋环境中具有QQ活性的细菌菌株时,Tenacibaculum sp。鉴定并选择了20J菌株,因为它具有针对各种AHL的高降解活性。在这项研究中,对20J菌株的活细胞和粗细胞提取物(CCE)的QQ活性进行了表征,并利用该菌株的CCE抑制了鱼类致病菌爱德华氏菌ACC35.1的培养物中AHL的产生被探索了。 tar。E. tarda ACC35.1产生N-己基-L-高丝氨酸内酯(C6-HSL)和N-氧代己酰基-L-高丝氨酸内酯(OC6-HSL)。这不同于针对其他大肠杆菌菌株的概况,表明该物种的AHL产生具有重要的种内变异性。菌株20J的CCE具有广谱的QQ活性,与苏云金芽孢杆菌血清型柏林人ATCC10792 CCE不同,它能有效消除塔塔肠杆菌ACC35.1培养物中产生的AHL。噬菌体-弯曲杆菌-拟杆菌属的这个成员显示出快速而广谱的AHL降解活性,使该菌株成为控制基于AHL的QS病原体的有前途的候选者,特别是在海水养殖业中。

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