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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Isolation and characterization of novel indigenous facultative quorum quenching bacterial strains for ambidextrous biofouling control
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Isolation and characterization of novel indigenous facultative quorum quenching bacterial strains for ambidextrous biofouling control

机译:二重土着兼性Quorum淬火细菌菌株的分离与表征用于二手生物污垢控制

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摘要

Quorum quenching (QQ), the disruption of microbial communication, has proven to be effective as an innovative anti-biofouling strategy for membrane bioreactors (MBRs). However, QQ bacteria for anaerobic environments have not been extensively analyzed in previous research. This study thus investigated facultative QQ bacterial strains that exhibit potential for use in aerobic and anaerobic MBRs. Two novel QQ strains from the genus Pseudomonas (KS2 and KS10) were isolated from anaerobic digester sludge using signal molecules as the sole carbon source. The two QQ strains exhibited significant signal molecule degradation depending on the oxygen levels and demonstrated endogenous QQ activity, with KS2 producing lactonase and KS10 producing acylase. The QQ strains significantly reduced the formation of the biofilm generated by both Pseudomonas aeruginosa (PAO1) and real sludge. Facultative QQ strains have the potential to offer a more flexible option for effective biofouling control in both aerobic and anaerobic MBRs.
机译:Quorum淬火(QQ),微生物通信中断的破坏已被证明是有效作为膜生物反应器(MBRS)的创新的抗生物污垢策略。然而,在以前的研究中尚未广泛分析厌氧环境的QQ细菌。因此,该研究研究了表现出在有氧和厌氧MBR中使用的潜力的兼性QQ细菌菌株。使用信号分子作为唯一碳源,从厌氧消化器污泥中分离出来自伪霉菌(KS2和KS10)的两种新型QQ菌株。两个QQ菌株根据氧水平表现出显着的信号分子降解,并显示出内源性QQ活性,用KS2产生酰基酶和KS10产生酰化酶。 QQ菌株显着降低了铜绿假单胞菌(PAO1)和真实污泥产生的生物膜的形成。兼容QQ菌株有可能为有氧和厌氧MBRS中有效的生物污染控制提供更灵活的选择。

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