Hu Huizhi, Luo Feng, Liu Yirong, Zeng Xiangguo
Faculty of Resources and Environmental Science, Hubei University, Wuhan 430062, China; Hubei Key Laboratory of Regional Development and Environmental Response, Wuhan 430062, China.
Faculty of Resources and Environmental Science, Hubei University, Wuhan 430062, China.
Water Sci Technol. 2021 Feb;83(3):515-531. doi: 10.2166/wst.2020.601.
Quorum sensing (QS) is a communication mode between microorganisms to regulate bacteria ecological relations and physiological behaviors, thus achieve the physiological function that single bacteria cannot complete. This phenomenon plays important roles in the formation of biofilm and granular sludge, and may be related to enhancement of some functional bacteria activity in wastewater treatment systems. There is a need to better understand bacterial QS in engineered reactors, and to assess how designs and operations might improve the removal efficiency. This article reviewed the recent advances of QS in several environmental systems and mainly analyzed the regulation mechanism of QS-based strategies for biofilm, granular sludge, functional bacteria, and biofouling control. The co-existences of multiple signal molecules in wastewater treatment (WWT) processes were also summarized, which provide basis for the future research on the QS mechanism of multiple signal molecules' interaction in WWT. This review would present some prospects and suggestions which are of practical significance for further application.
群体感应(QS)是微生物之间的一种通信模式,用于调节细菌的生态关系和生理行为,从而实现单个细菌无法完成的生理功能。这种现象在生物膜和颗粒污泥的形成中起着重要作用,并且可能与废水处理系统中某些功能细菌活性的增强有关。有必要更好地了解工程反应器中的细菌群体感应,并评估设计和操作如何提高去除效率。本文综述了群体感应在几个环境系统中的最新进展,并主要分析了基于群体感应的生物膜、颗粒污泥、功能细菌和生物污垢控制策略的调控机制。还总结了废水处理(WWT)过程中多种信号分子的共存情况,为未来研究WWT中多种信号分子相互作用的群体感应机制提供了依据。本综述将提出一些具有实际意义的前景和建议,以供进一步应用。