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N-酰基高丝氨酸内酯分子辅助群体感应:现实生活中细菌交流的影响、后果和监测。

N-acyl homoserine lactone molecules assisted quorum sensing: effects consequences and monitoring of bacteria talking in real life.

机构信息

Vocational School of Health Science, Pharmacy Services Program, Tarsus University, 33400, Tarsus/Mersin , Turkey.

Biology Department, Faculty of Arts and Science, Aksaray University, Aksaray, Turkey.

出版信息

Arch Microbiol. 2021 Sep;203(7):3739-3749. doi: 10.1007/s00203-021-02381-9. Epub 2021 May 18.

Abstract

Bacteria utilize small signal molecules to monitor population densities. Bacteria arrange gene regulation in a method called Quorum Sensing (QS). The most widespread signalling molecules are N-Acyl Homoserine Lactones (AHLs/HSLs) for Gram-negative bacteria communities. QS plays significant role in the organizing of the bacterial gene that adapts to harsh environmental conditions for bacteria. It is involved in the arrangement of duties, such as biofilm formation occurrence, virulence activity of bacteria, production of antibiotics, plasmid conjugal transfer incident, pigmentation phenomenon and production of exopolysaccharide (EPS). QS obviously impacts on human health, agriculture and environment. AHL-related QS researches have been extensively studied and understood in depth for cell to cell intercommunication channel in Gram-negative bacteria. It is understood that AHL-based QS research has been extensively studied for cell-to-cell communication in Gram-negative bacteria; hence, a comprehensive study of AHLs, which are bacterial signal molecules, is required. The purpose of this review is to examine the effects of QS-mediated AHLs in many areas by looking at them from a different perspectives, such as clinic samples, food industry, aquatic life and wastewater treatment system.

摘要

细菌利用小分子信号来监测种群密度。细菌采用一种称为群体感应(QS)的方法来安排基因调控。革兰氏阴性菌群落中最广泛的信号分子是 N-酰基高丝氨酸内酯(AHLs/HSLs)。QS 在组织适应恶劣环境条件的细菌基因方面起着重要作用。它涉及到职责的安排,例如生物膜形成的发生、细菌的毒力活性、抗生素的产生、质粒的共轭转移事件、色素沉着现象和胞外多糖(EPS)的产生。QS 显然会影响人类健康、农业和环境。在革兰氏阴性细菌的细胞间通讯通道中,已经对 AHL 相关的 QS 研究进行了广泛而深入的研究。据了解,已经对基于 AHL 的 QS 研究进行了广泛的研究,以了解革兰氏阴性细菌的细胞间通讯;因此,需要对细菌信号分子 AHL 进行全面研究。本综述的目的是通过从不同角度(如临床样本、食品工业、水生生物和废水处理系统)来考察 QS 介导的 AHL 在许多领域的影响。

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