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首页> 外文期刊>Microbial Biotechnology >The hydrocarbon-degrading marine bacterium Cobetia sp. strain MM1IDA2H-1 produces a biosurfactant that interferes with quorum sensing of fish pathogens by signal hijacking.
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The hydrocarbon-degrading marine bacterium Cobetia sp. strain MM1IDA2H-1 produces a biosurfactant that interferes with quorum sensing of fish pathogens by signal hijacking.

机译:降解烃的海洋细菌Cobetia sp。 MM1IDA2H-1菌株产生一种生物表面活性剂,通过信号劫持来干扰鱼类病原体的群体感应。

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Biosurfactants are produced by hydrocarbon-degrading marine bacteria in response to the presence of water-insoluble hydrocarbons. This is believed to facilitate the uptake of hydrocarbons by bacteria. However, these diffusible amphiphilic surface-active molecules are involved in several other biological functions such as microbial competition and intra- or inter-species communication. We report the isolation and characterization of a marine bacterial strain identified as Cobetia sp. MM1IDA2H-1, which can grow using the sulfur-containing heterocyclic aromatic hydrocarbon dibenzothiophene (DBT). As with DBT, when the isolated strain is grown in the presence of a microbial competitor, it produces a biosurfactant. Because the obtained biosurfactant was formed by hydroxy fatty acids and extracellular lipidic structures were observed during bacterial growth, we investigated whether the biosurfactant at its critical micelle concentration can interfere with bacterial communication systems such as quorum sensing. We focused on Aeromonas salmonicida subsp. salmonicida, a fish pathogen whose virulence relies on quorum sensing signals. Using biosensors for quorum sensing based on Chromobacterium violaceum and Vibrio anguillarum, we showed that when the purified biosurfactant was mixed with N-acyl homoserine lactones produced by A. salmonicida, quorum sensing was inhibited, although bacterial growth was not affected. In addition, the transcriptional activities of A. salmonicida virulence genes that are controlled by quorum sensing were repressed by both the purified biosurfactant and the growth in the presence of Cobetia sp. MM1IDA2H-1. We propose that the biosurfactant, or the lipid structures interact with the N-acyl homoserine lactones, inhibiting their function. This could be used as a strategy to interfere with the quorum sensing systems of bacterial fish pathogens, which represents an attractive alternative to classical antimicrobial therapies in fish aquaculture.
机译:响应于水不溶性烃的存在,通过烃降解海洋细菌来生产生物表面活性剂。据信这有助于细菌吸收碳氢化合物。但是,这些可扩散的两亲性表面活性分子还涉及其他几种生物学功能,例如微生物竞争和种内或种间通讯。我们报告了隔离和表征的海洋细菌菌株鉴定为Cobetia sp。 MM1IDA2H-1,可以使用含硫杂环芳烃二苯并噻吩(DBT)进行生长。与DBT一样,当分离的菌株在微生物竞争剂的存在下生长时,它会产生生物表面活性剂。因为获得的生物表面活性剂是由羟基脂肪酸形成的,并且在细菌生长过程中观察到了细胞外脂质结构,所以我们研究了处于临界胶束浓度的生物表面活性剂是否会干扰细菌通讯系统,例如群体感应。我们专注于鲑鱼气单胞菌亚种。鲑鱼,一种鱼类致病菌,其毒性取决于群体感应信号。使用基于紫细菌和鳗弧菌的群体感应生物传感器,我们显示,当将纯化的生物表面活性剂与沙门氏菌生产的N-酰基高丝氨酸内酯混合时,群体感应被抑制,尽管细菌的生长不受影响。另外,纯化的生物表面活性剂和在Cobetia sp。存在下的生长均抑制了由群体感应控制的沙门氏菌毒力基因的转录活性。 MM1IDA2H-1。我们建议生物表面活性剂或脂质结构与N-酰基高丝氨酸内酯相互作用,抑制其功能。这可以用作干扰细菌鱼类病原体群体感应系统的策略,这是鱼类水产养殖中经典抗菌疗法的一种有吸引力的替代方法。

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