Department of Science, University Roma Tre, Rome, Italy.
National Biofilms Innovation Centre, Biodiscovery Institute and School of Life Sciences, University of Nottingham, Nottingham, United Kingdom.
mBio. 2023 Dec 19;14(6):e0203923. doi: 10.1128/mbio.02039-23. Epub 2023 Oct 16.
Single-cell analyses can reveal that despite experiencing identical physico-chemical conditions, individual bacterial cells within a monoclonal population may exhibit variations in gene expression. Such phenotypic heterogeneity has been described for several aspects of bacterial physiology, including QS activation. This study demonstrates that the transition of non-quorate cells to the quorate state is a graded process that does not occur at a specific cell density and that subpopulations of non-quorate cells also persist at high cell density. Here, we provide a mechanistic explanation for this phenomenon, showing that a negative feedback regulatory loop integrated into the las system has a pivotal role in promoting cell-to-cell variation in the QS activation state and in limiting the transition of non-quorate cells to the quorate state in .
单细胞分析可以揭示出,尽管处于相同的物理化学条件下,单克隆群体中的单个细菌细胞可能表现出基因表达的变化。这种表型异质性已经在细菌生理学的几个方面得到了描述,包括 QS 的激活。这项研究表明,非感应细胞向感应细胞的转变是一个逐渐的过程,不会在特定的细胞密度下发生,而且非感应细胞的亚群也会在高细胞密度下持续存在。在这里,我们为这一现象提供了一个机制上的解释,表明整合到 las 系统中的负反馈调节环在促进 QS 激活状态的细胞间变异以及限制非感应细胞向 感应状态的转变方面起着关键作用。