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植物相关细菌中的群体感应

Quorum sensing in plant-associated bacteria.

作者信息

Loh John, Pierson Elizabeth A, Pierson Leland S, Stacey Gary, Chatterjee Arun

机构信息

Department of Plant Microbiology and Pathology, University of Missouri, Columbia, Missouri, USA.

出版信息

Curr Opin Plant Biol. 2002 Aug;5(4):285-90. doi: 10.1016/s1369-5266(02)00274-1.

Abstract

N-acyl homoserine lactone (AHL)-mediated quorum sensing by bacteria regulates traits that are involved in symbiotic, pathogenic and surface-associated relationships between microbial populations and their plant hosts. Recent advances demonstrate deviations from the classic LuxR/LuxI paradigm, which was first developed in Vibrio. For example, LuxR homologs can repress as well as activate gene expression, and non-AHL signals and signal mimics can affect the expression of genes that are controlled by quorum sensing. Many bacteria utilize multiple quorum-sensing systems, and these may be modulated via post-transcriptional and other global regulatory mechanisms. Microbes inhabiting plant surfaces also produce and respond to a diverse mixture of AHL signals. The production of AHL mimics by plants and the identification of AHL degradative pathways suggest that bacteria and plants utilize this method of bacterial communication as a key control point for influencing the outcome of their interactions.

摘要

细菌通过N-酰基高丝氨酸内酯(AHL)介导的群体感应来调节微生物群体与其植物宿主之间共生、致病和表面相关关系中涉及的性状。最近的进展表明,这一现象与最初在弧菌中发现的经典LuxR/LuxI模式存在偏差。例如,LuxR同源物既能抑制也能激活基因表达,非AHL信号和信号模拟物可影响群体感应控制的基因的表达。许多细菌利用多种群体感应系统,这些系统可能通过转录后和其他全局调控机制进行调节。栖息在植物表面的微生物也会产生AHL信号的多种混合物并对其作出反应。植物产生AHL模拟物以及AHL降解途径的鉴定表明,细菌和植物利用这种细菌通讯方式作为影响它们相互作用结果的关键控制点。

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