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N-Acyl Homoserine Lactone-Mediated Quorum Sensing with Special Reference to Use of Quorum Quenching Bacteria in Membrane Biofouling Control

机译:N-酰基高丝氨酸内酯介导的群体感应,特别涉及在膜生物污染控制中使用群体淬灭细菌。

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Membrane biofouling remains a severe problem to be addressed in wastewater treatment systems affecting reactor performance and economy. The finding that many wastewater bacteria rely onN-acyl homoserine lactone-mediated quorum sensing to synchronize their activities essential for biofilm formations; the quenching bacterial quorum sensing suggests a promising approach for control of membrane biofouling. A variety of quorum quenching compounds of both synthetic and natural origin have been identified and found effective in inhibition of membrane biofouling with much less environmental impact than traditional antimicrobials. Work over the past few years has demonstrated that enzymatic quorum quenching mechanisms are widely conserved in several prokaryotic organisms and can be utilized as a potent tool for inhibition of membrane biofouling. Such naturally occurring bacterial quorum quenching mechanisms also play important roles in microbe-microbe interactions and have been used to develop sustainable nonantibiotic antifouling strategies. Advances in membrane fabrication and bacteria entrapment techniques have allowed the implication of such quorum quenching bacteria for better design of membrane bioreactor with improved antibiofouling efficacies. In view of this, the present paper is designed to review and discuss the recent developments in control of membrane biofouling with special emphasis on quorum quenching bacteria that are applied in membrane bioreactors.
机译:膜生物结垢仍然是影响反应器性能和经济性的废水处理系统中需要解决的严重问题。许多废水细菌依赖N-酰基高丝氨酸内酯介导的群体感应来同步其对生物膜形成必不可少的活动的发现;淬灭细菌群体感应表明控制膜生物结垢的一种有前途的方法。已经鉴定出多种合成和天然来源的群体猝灭化合物,并发现它们在抑制膜生物结垢方面具有有效的抑制作用,而对环境的影响比传统的抗菌剂要少得多。过去几年的工作表明,酶促群体猝灭机制在几种原核生物中广泛保存,可以用作抑制膜生物污染的有效工具。这种天然存在的细菌群体猝灭机制在微生物与微生物的相互作用中也起着重要作用,并已被用于发展可持续的非抗生素防污策略。膜制造和细菌截留技术的进步使得这种群体猝灭细菌可以更好地设计膜生物反应器并提高抗污垢效果。有鉴于此,本论文旨在回顾和讨论膜生物污染控制的最新进展,特别着重于应用于膜生物反应器的群体猝灭细菌。

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