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Selection of the N-Acylhomoserine Lactone-Degrading Bacterium Alteromonas stellipolaris PQQ-42 and of Its Potential for Biocontrol in Aquaculture

机译:N-酰基高丝氨酸内酯降解细菌嗜盐链霉菌PQQ-42的选择及其在水产养殖中的生物防治潜力

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摘要

The production of virulence factors by many pathogenic microorganisms depends on the intercellular communication system called quorum sensing, which involves the production and release of signal molecules known as autoinducers. Based on this, new-therapeutic strategies have emerged for the treatment of a variety of infections, such as the enzymatic degradation of signaling molecules, known as quorum quenching (QQ). In this study, we present the screening of QQ activity amongst 450 strains isolated from a bivalve hatchery in Granada (Spain), and the selection of the strain PQQ-42, which degrades a wide range of N-acylhomoserine lactones (AHLs). The selected strain, identified as Alteromonas stellipolaris, degraded the accumulation of AHLs and reduced the production of protease and chitinase and swimming motility of a Vibrio species in co-cultivation experiments in vitro. In the bio-control experiment, strain PQQ-42 significantly reduced the pathogenicity of Vibrio mediterranei VibC-Oc-097 upon the coral Oculina patagonica showing a lower degree of tissue damage (29.25 ± 14.63%) in its presence, compared to when the coral was infected with V. mediterranei VibC-Oc-097 alone (77.53 ± 13.22%). Our results suggest that this AHL-degrading bacterium may have biotechnological applications in aquaculture.
机译:许多病原微生物产生毒力因子的过程取决于称为群体感应的细胞间通讯系统,该系统涉及信号分子的产生和释放,这些信号分子被称为自动诱导剂。基于此,已经出现了用于治疗多种感染的新疗法策略,例如信号分子的酶促降解(称为群体淬灭(QQ))。在这项研究中,我们目前从西班牙格拉纳达的双壳孵化场分离的450株菌株中筛选QQ活性,并选择PQQ-42菌株,该菌株可降解各种N-酰基高丝氨酸内酯(AHLs)。在体外共培养实验中,选定的菌株为Stellipolaris,可降低AHL的积累并降低蛋白酶和几丁质酶的生产以及弧菌的游泳运动。在生物控制实验中,与珊瑚时相比,PQQ-42菌株显着降低了地中海巴氏菌对巴塔哥尼亚弧菌的组织致病性(29.25±14.63%),对病原菌的致病性大大降低。单独感染了地中海弧菌VibC-Oc-097(77.53±13.22%)。我们的结果表明,这种可降解AHL的细菌可能在水产养殖中具有生物技术应用。

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