Liu Jianfei, Fu Kaifei, Wang Yuxiao, Wu Chenglin, Li Fei, Shi Lei, Ge Yinlin, Zhou Lijun
Department of Biochemistry and Molecular Biology, Medical College of Qingdao UniversityQingdao, China.
Central Laboratory, Navy General Hospital of PLABeijing, China.
Front Microbiol. 2017 Jun 16;8:1097. doi: 10.3389/fmicb.2017.01097. eCollection 2017.
Quorum sensing (QS) is a cell-to-cell communication system based on the exchange of small intercellular signal molecules, such as N-Acyl homoserine lactones (AHLs), which act as cell-density mediators of QS gene expression, and are highly variable both in types and amounts in most Gram-negative Proteobacteria. Understanding the regulation of AHLs may contribute to the elucidation of cell density-dependent phenomena, such as biofilm formation. is among the most frequently observed marine opportunistic pathogens. However, AHL production of this species and its effects on biofilm formation remain to be understood. Here, our study reported the diverse AHL profiles of 47 marine-isolated strains and the effects of exogenous 3-oxo-C-HSL on biofilm formation under different temperature conditions (16°C and 28°C). A total of 11 detected AHLs were produced by the isolates, of which 3-OH-C-HSL, 3-oxo-C-HSL and 3-oxo-C-HSL comprised the largest proportions. We also observed that moderate levels of exogenous 3-oxo-C-HSL (10 and 20 μM) could induce or enhance biofilm formation and alter its structure, while high levels (40 and 100 μM) did not significantly improve and even inhibited biofilm formation in . Further, regulation by exogenous 3-oxo-C-HSL was both concentration- and temperature-dependent in .
群体感应(QS)是一种基于小细胞间信号分子交换的细胞间通讯系统,例如N-酰基高丝氨酸内酯(AHLs),它们作为QS基因表达的细胞密度介质,在大多数革兰氏阴性变形菌中的类型和数量都高度可变。了解AHLs的调控可能有助于阐明细胞密度依赖性现象,如生物膜形成。是最常见的海洋机会性病原体之一。然而,该物种的AHLs产生及其对生物膜形成的影响仍有待了解。在这里,我们的研究报告了47株海洋分离菌株的不同AHLs谱以及外源3-氧代-C-HSL在不同温度条件(16°C和28°C)下对生物膜形成的影响。分离株共产生了11种检测到的AHLs,其中3-OH-C-HSL、3-氧代-C-HSL和3-氧代-C-HSL占比最大。我们还观察到,中等水平的外源3-氧代-C-HSL(10和20μM)可以诱导或增强生物膜形成并改变其结构,而高水平(40和100μM)在中并没有显著改善甚至抑制生物膜形成。此外,外源3-氧代-C-HSL的调控在中既依赖浓度又依赖温度。