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个体发光弧菌中群体感应信号的异质响应。

Heterogeneous response to a quorum-sensing signal in the luminescence of individual Vibrio fischeri.

机构信息

Physics Department, University of Florida, Gainesville, Florida, United States of America.

出版信息

PLoS One. 2010 Nov 16;5(11):e15473. doi: 10.1371/journal.pone.0015473.

Abstract

The marine bacterium Vibrio fischeri regulates its bioluminescence through a quorum sensing mechanism: the bacterium releases diffusible small molecules (autoinducers) that accumulate in the environment as the population density increases. This accumulation of autoinducer (AI) eventually activates transcriptional regulators for bioluminescence as well as host colonization behaviors. Although V. fischeri quorum sensing has been extensively characterized in bulk populations, far less is known about how it performs at the level of the individual cell, where biochemical noise is likely to limit the precision of luminescence regulation. We have measured the time-dependence and AI-dependence of light production by individual V. fischeri cells that are immobilized in a perfusion chamber and supplied with a defined concentration of exogenous AI. We use low-light level microscopy to record and quantify the photon emission from the cells over periods of several hours as they respond to the introduction of AI. We observe an extremely heterogeneous response to the AI signal. Individual cells differ widely in the onset time for their luminescence and in their resulting brightness, even in the presence of high AI concentrations that saturate the light output from a bulk population. The observed heterogeneity shows that although a given concentration of quorum signal may determine the average light output from a population of cells, it provides far weaker control over the luminescence output of each individual cell.

摘要

海洋细菌发光杆菌通过群体感应机制来调节生物发光

细菌释放可扩散的小分子(自诱导物),随着种群密度的增加,这些自诱导物在环境中积累。这种自诱导物(AI)的积累最终激活生物发光和宿主定植行为的转录调节因子。尽管 V. fischeri 的群体感应在群体水平上得到了广泛的研究,但对其在单个细胞水平上的作用知之甚少,在单个细胞水平上,生化噪声可能会限制发光调节的精度。我们已经测量了在灌注室中固定的单个 V. fischeri 细胞的光产生的时间依赖性和 AI 依赖性,这些细胞被供应有定义浓度的外源性 AI。我们使用低光水平显微镜来记录和量化细胞在数小时内对 AI 引入的反应过程中的光子发射,并对其进行量化。我们观察到对 AI 信号的极其异质响应。即使在高 AI 浓度下,单个细胞的发光起始时间和发光强度也有很大差异,高 AI 浓度会使群体的光输出饱和。观察到的异质性表明,尽管给定浓度的群体信号可能决定细胞群体的平均光输出,但它对每个单个细胞的发光输出的控制要弱得多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00f7/2982848/06fd2ca15177/pone.0015473.g001.jpg

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