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生物膜介导的重金属抗性与转化中的群体感应:环境视角与生物修复

Quorum sensing in biofilm-mediated heavy metal resistance and transformation: environmental perspectives and bioremediation.

作者信息

Mondal Subhoshmita, Melzi Alice, Zecchin Sarah, Cavalca Lucia

机构信息

Dipartimento di Scienze per gli Alimenti, la Nutrizione e l'Ambiente (DeFENS), Università degli Studi di Milano, Milan, Italy.

出版信息

Front Microbiol. 2025 Jul 3;16:1607370. doi: 10.3389/fmicb.2025.1607370. eCollection 2025.

Abstract

Quorum sensing is a fundamental mechanism of bacterial cell-to-cell communication that enables microbial communities to adapt to environmental stresses. Although the role of quorum sensing in biofilm formation and heavy metal resistance has been studied across various bacterial species, significant research gaps remain regarding the specific quorum sensing-regulated metabolic pathways involved in heavy metal resistance and transformation, as well as their functional roles in bioremediation. This review provides a comprehensive overview of the connection between quorum sensing and heavy metal resistance and transformation, considering both cellular and ecological perspectives. It highlights recent advancements in understanding quorum sensing-regulated biofilm dynamics and identifies a lack of knowledge related to quorum sensing-mediated heavy metal resistance in natural ecosystems. Furthermore, innovative quorum sensing-based strategies for optimizing bioremediation are explored. By emphasizing the ecological and practical implications of quorum sensing-driven bioremediation, this review aims to contribute to the development of more effective and sustainable approaches for mitigating heavy metal pollution.

摘要

群体感应是细菌细胞间通讯的一种基本机制,它使微生物群落能够适应环境压力。尽管已经在各种细菌物种中研究了群体感应在生物膜形成和重金属抗性中的作用,但在涉及重金属抗性和转化的特定群体感应调节代谢途径及其在生物修复中的功能作用方面,仍存在重大研究空白。本综述从细胞和生态两个角度全面概述了群体感应与重金属抗性和转化之间的联系。它突出了在理解群体感应调节的生物膜动态方面的最新进展,并指出在自然生态系统中缺乏与群体感应介导的重金属抗性相关的知识。此外,还探索了基于群体感应的创新策略以优化生物修复。通过强调群体感应驱动的生物修复的生态和实际意义,本综述旨在为开发更有效和可持续的减轻重金属污染的方法做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0684/12267290/74f4b6454162/fmicb-16-1607370-g001.jpg

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