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A Nitric Oxide-Responsive Quorum Sensing Circuit in Vibrio harveyi Regulates Flagella Production and Biofilm Formation

机译:哈维弧菌中一氧化氮响应的群体感应电路调节鞭毛产生和生物膜形成

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摘要

Cell signaling plays an important role in the survival of bacterial colonies. They use small molecules to coordinate gene expression in a cell density dependent manner. This process, known as quorum sensing, helps bacteria regulate diverse functions such as bioluminescence, biofilm formation and virulence. In Vibrio harveyi, a bioluminescent marine bacterium, four parallel quorum-sensing systems have been identified to regulate light production. We have previously reported that nitric oxide (NO), through the H-NOX/HqsK quorum sensing pathway contributes to light production in V. harveyi through the LuxU/LuxO/LuxR quorum sensing pathway. In this study, we show that nitric oxide (NO) also regulates flagellar production and enhances biofilm formation. Our data suggest that V. harveyi is capable of switching between lifestyles to be able to adapt to changes in the environment.
机译:细胞信号在细菌菌落的存活中起重要作用。他们使用小分子以细胞密度依赖性方式协调基因表达。这个过程称为群体感应,有助于细菌调节多种功能,例如生物发光,生物膜形成和毒力。在哈维弧菌(Vibrio harveyi)这种生物发光的海洋细菌中,已经确定了四个平行的群体感应系统来调节光的产生。我们以前曾报道过,通过H-NOX / HqsK群体感应途径产生的一氧化氮(NO)通过LuxU / LuxO / LuxR群体感应途径有助于哈维伊弧菌的光产生。在这项研究中,我们表明一氧化氮(NO)也调节鞭毛的产生并增强生物膜的形成。我们的数据表明,哈维弧菌能够在生活方式之间进行切换,以适应环境的变化。

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