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Bacterial Quorum Sensing and Microbial Community Interactions

机译:细菌群体感应和微生物群落相互作用

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摘要

ABSTRACT Many bacteria use a cell-cell communication system called quorum sensing to coordinate population density-dependent changes in behavior. Quorum sensing involves production of and response to diffusible or secreted signals, which can vary substantially across different types of bacteria. In many species, quorum sensing modulates virulence functions and is important for pathogenesis. Over the past half-century, there has been a significant accumulation of knowledge of the molecular mechanisms, signal structures, gene regulons, and behavioral responses associated with quorum-sensing systems in diverse bacteria. More recent studies have focused on understanding quorum sensing in the context of bacterial sociality. Studies of the role of quorum sensing in cooperative and competitive microbial interactions have revealed how quorum sensing coordinates interactions both within a species and between species. Such studies of quorum sensing as a social behavior have relied on the development of “synthetic ecological” models that use nonclonal bacterial populations. In this review, we discuss some of these models and recent advances in understanding how microbes might interact with one another using quorum sensing. The knowledge gained from these lines of investigation has the potential to guide studies of microbial sociality in natural settings and the design of new medicines and therapies to treat bacterial infections.
机译:摘要许多细菌使用称为群体感应的细胞间通讯系统来协调种群密度相关的行为变化。群体感应涉及产生或响应可扩散或分泌的信号,这些信号在不同类型的细菌之间可能会发生很大变化。在许多物种中,群体感应调节毒力功能,对于发病机理很重要。在过去的半个世纪中,已经积累了有关各种细菌中群体感应系统相关的分子机制,信号结构,基因调控以及行为反应的知识。最近的研究集中在理解细菌社会背景下的群体感应。对群体感应在合作和竞争性微生物相互作用中的作用的研究表明,群体感应如何协调物种内部和物种之间的相互作用。群体感应作为一种社会行为的这类研究依赖于使用非克隆细菌种群的“合成生态”模型的发展。在这篇综述中,我们讨论了其中一些模型以及了解微生物如何通过群体感应相互影响的最新进展。从这些研究领域中获得的知识具有指导自然环境中微生物社会性的研究以及设计用于治疗细菌感染的新药和疗法的潜力。

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