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首页> 外文期刊>Marine biotechnology >Stenotrophomonas maltophilia AHL-Degrading Strains Isolated from Marine Invertebrate Microbiota Attenuate the Virulence of Pectobacterium carotovorum and Vibrio coralliilyticus
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Stenotrophomonas maltophilia AHL-Degrading Strains Isolated from Marine Invertebrate Microbiota Attenuate the Virulence of Pectobacterium carotovorum and Vibrio coralliilyticus

机译:斯内特科莫洛尼亚麦芽毛虫AHL降解从海洋无脊椎动物微生物分离的菌株验证了CECTOTOVORUM和VIBRIO CORALLIILYUS的毒力

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摘要

Many Gram-negative aquacultural and agricultural pathogens control virulence factor expression through a quorum-sensing (QS) mechanism involving the production of N-acylhomoserine (AHL) signalling molecules. Thus, the interruption of QS systems by the enzymatic degradation of signalling molecules, known as quorum quenching (QQ), has been proposed as a novel strategy to combat these infections. Given that the symbiotic bacteria of marine invertebrates are considered to be an important source of new bioactive molecules, this study explores the presence of AHL-degrading bacteria among 827 strains previously isolated from the microbiota of anemones and holothurians. Four of these strains (M3-1, M1-14, M3-13 and M9-54-2), belonging to the species Stenotrophomonas maltophilia, were selected on the basis of their ability to degrade a broad range of AHLs, and the enzymes involved in their activity were identified. Strain M9-54-2, which showed the strongest AHL-degrading activity, was selected for further study. High-performance liquid chromatography-mass-spectrometry confirmed that the QQ enzyme is not a lactonase. Strain M9-54-2 degraded AHL accumulation and reduced the production of enzymatic activity in Pectobacterium carotovorum CECT 225(T) and Vibrio coralliilyticus VibC-Oc-193 in in vitro co-cultivation experiments. The effect of AHL inactivation was confirmed by a reduction in potato tuber maceration and brine shrimp (Artemia salina) mortality caused by P. carotovorum and Vibrio coralliilyticus, respectively. This study strengthens the evidence of marine organisms as an underexplored and promising source of QQ enzymes, useful to prevent infections in aquaculture and agriculture. To our knowledge, this is the first time that anemones and holothurians have been studied for this purpose.
机译:许多革兰氏阴性水产病和农业病原体通过涉及N-酰基骨(AHL)信号分子的仲裁感测(QS)机制来控制毒力因子表达。因此,已经提出了通过信令分子的酶促劣化的QS系统中断,称为仲裁猝灭(QQ)作为对抗这些感染的新策略。鉴于海洋无脊椎动物的共生细菌被认为是新的生物活性分子的重要来源,本研究探讨了先前从海葵和妓院微生物群中分离的827株中菌株中AHL降解细菌的存在。这些菌株(M3-1,M1-14,M3-13和M3-13和M9-54-2)的四个是基于它们降解广泛的AHL和酶的能力选择甾粒细胞麦芽菌菌属确定了他们的活动。选择表现出最强的AHL降解活性的菌株M9-54-2进行进一步研究。高效液相色谱 - 质谱法证实QQ酶不是乳酸酶。菌株M9-54-2降低AHL积累,并降低了在体外共培养实验中的胶杆COROTOVORUM CECT 225(T)和Vibrio Coralliilyticus VIBC-OC-193中的酶活性的产生。通过分别降低马铃薯块茎和盐水虾(Artemia Salina)死亡率分别对盐酸盐块茎和盐水虾(Astemia Salina)死亡率的影响分别证实了AHL失活的影响。本研究加强了海洋生物的证据,作为QQ酶的过度和有希望的来源,可用于预防水产养殖和农业的感染。为了我们的知识,这是第一次为此目的研究了银色和妓女。

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