首页> 美国卫生研究院文献>other >Unusual Long-Chain N-Acyl Homoserine Lactone Production by and Presence of Quorum Quenching Activity in Bacterial Isolates from Diseased Tilapia Fish
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Unusual Long-Chain N-Acyl Homoserine Lactone Production by and Presence of Quorum Quenching Activity in Bacterial Isolates from Diseased Tilapia Fish

机译:不寻常的长链N-酰基高丝氨酸内酯生产通过从患病罗非鱼仲裁淬火活性的细菌分离株的存在和

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摘要

Growth-dependent cell-cell communication termed quorum sensing is a key regulatory system in bacteria for controlling gene expression including virulence factors. In this study five potential bacterial pathogens including Bacillus sp. W2.2, Klebsiella sp. W4.2, Pseudomonas sp. W3 and W3.1 and Serratia sp. W2.3 were isolated from diseased Tilapia fish in Malaysia, supplied by the leading global fish supplier. Proteolytic activity assays confirmed that with the exception of Klebsiella sp. W4.2, all isolates showed distinct proteolytic activity. Furthermore Bacillus sp. W2.2 and Pseudomonas sp. strains W3 and W3.1 also displayed haemolytic activity. By using high resolution liquid chromatography mass spectrometry, we revealed the presence of unusually long-chain N-(3-oxohexadecanoyl)-homoserine lactone (3-oxo-C16-HSL) from Pseudomonas sp. W3.1 and N-dodecanoyl-homoserine lactone (C12-HSL) from Serratia sp. W2.3, respectively. Interestingly, Pseudomonas sp. W3.1 also produced a wide range of Pseudomonas quinolone signalling (PQS) molecules. Pseudomonas sp. W3 did not show any quorum sensing properties but possessed quorum quenching activity that inactivated AHLs. This study is the first documentation that shows unusual long-chain AHLs production in Serratia sp. and Pseudomonas sp. isolated from diseased fish and the latter also produce a wide range of PQS molecules.
机译:称为群体感应的依赖生长的细胞间通讯是细菌中用于控制包括毒力因子在内的基因表达的关键调节系统。在这项研究中,五个潜在的细菌病原体包括芽孢杆菌。 W2.2,克雷伯菌属。 W4.2,假单胞菌属。 W3和W3.1和Serratia sp。 W2.3是从马来西亚有病的罗非鱼鱼中分离出来的,该鱼由全球领先的鱼品供应商提供。蛋白水解活性测定证实除了克雷伯菌属(Klebsiella sp。)。 W4.2,所有分离株均表现出独特的蛋白水解活性。此外芽孢杆菌。 W2.2和假单胞菌。菌株W3和W3.1也显示出溶血活性。通过使用高分辨率液相色谱质谱法,我们揭示了来自假单胞菌属的异常长链N-(3-氧十六烷酰基)-高丝氨酸内酯(3-oxo-C16-HSL)的存在。来自Serratia sp。的W3.1和N-十二烷酰基-高丝氨酸内酯(C12-HSL)。 W2.3,分别。有趣的是,假单胞菌属。 W3.1还产生了多种假单胞菌喹诺酮信号传导(PQS)分子。假单胞菌W3没有显示任何群体感应特性,但具有使AHL失活的群体猝灭活性。这项研究是第一个显示Serratia sp。中异常长链AHL产生的文档。和假单胞菌从患病的鱼类中分离出来,后者也可以产生多种PQS分子。

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