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群体感应——一种用于降解含有持久性有机污染物的工业废物的有前途的工具。

Quorum sensing - a promising tool for degradation of industrial waste containing persistent organic pollutants.

机构信息

Department of Environmental Microbiology, School for Environmental Sciences, Babasaheb Bhimrao Ambedkar University (A Central University), VidyaVihar, Raebareli Road, Lucknow, 226025, U.P., India.

Department of Environmental Microbiology, School for Environmental Sciences, Babasaheb Bhimrao Ambedkar University (A Central University), VidyaVihar, Raebareli Road, Lucknow, 226025, U.P., India.

出版信息

Environ Pollut. 2022 Jan 1;292(Pt B):118342. doi: 10.1016/j.envpol.2021.118342. Epub 2021 Oct 12.

DOI:10.1016/j.envpol.2021.118342
PMID:34653589
Abstract

Restoring an environment contaminated with persistent organic pollutants (POPs) is highly challenging. Biodegradation by biofilm-forming bacteria through quorum sensing (QS) is a promising treatment process to remove these pollutants and promotes eco-restoration. QS plays an important role in biofilm formation, solubilization, and biotransformation of pollutants. QS is a density-based communication between microbial cells via signalling molecules, which coordinates specific characters and helps bacteria to acclimatize against stress conditions. Genetic diversification of a biofilm offers excellent opportunities for horizontal gene transfer, improves resistance against stress, and provides a suitable environment for the metabolism of POPs. To develop this technology in industrial scale, it is important to understand the fundamentals and ubiquitous nature of QS bacteria and appreciate the role of QS in the degradation of POPs. Currently, there are knowledge gaps regarding the environmental niche, abundance, and population of QS bacteria in wastewater treatment systems. This review aims to present up-to-date and state-of-the-art information on the roles of QS and QS-mediated strategies in industrial waste treatment including biological treatments (such as activated sludge), highlighting their potentials using examples from the pulp and paper mill industry, hydrocarbon remediation and phytoremediation. The information will help to provide a throughout understanding of the potential of QS to degrade POPs and advance the use of this technology. Current knowledge of QS strategies is limited to laboratory studies, full-scale applications remain challenging and more research is need to explore QS gene expression and test in full-scale reactors for wastewater treatment.

摘要

修复被持久性有机污染物(POPs)污染的环境极具挑战性。通过生物膜形成细菌通过群体感应(QS)进行生物降解是一种很有前途的处理过程,可以去除这些污染物并促进生态恢复。QS 在生物膜的形成、溶解和污染物的生物转化中起着重要作用。QS 是微生物细胞之间基于密度的信号分子通讯,协调特定的特征,并帮助细菌适应应激条件。生物膜的遗传多样化为水平基因转移提供了极好的机会,提高了对压力的抵抗力,并为 POPs 的新陈代谢提供了合适的环境。为了在工业规模上开发这项技术,了解 QS 细菌的基本原理和普遍性质,并认识到 QS 在 POPs 降解中的作用非常重要。目前,关于废水处理系统中 QS 细菌的环境生态位、丰度和种群还存在知识空白。本综述旨在介绍最新的关于 QS 及其介导的策略在工业废物处理中的作用的信息,包括生物处理(如活性污泥),并通过纸浆和造纸厂工业、烃类修复和植物修复的例子突出其潜力。这些信息将有助于全面了解 QS 降解 POPs 的潜力,并推进该技术的应用。目前对 QS 策略的了解仅限于实验室研究,全面应用仍然具有挑战性,需要更多的研究来探索 QS 基因表达,并在废水处理的全规模反应器中进行测试。

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