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Quorum sensing in the Vibrio fischeri-Euprymna scolopes symbiosis.

机译:费氏弧菌-Euprymna弧菌共生中的群体感应。

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摘要

Quorum sensing is a cell density-dependent bacterial gene regulatory mechanism used for the expression of colonization-related genes. The symbiotic relationship between the luminescent bacterium Vibrio fischeri and the Hawaiian bobtail squid Euprymna scolopes serves as a model system to study the molecular processes underlying bacterial colonization. This system is especially well-suited for the investigation of the impact of quorum sensing on colonization because (i) it is an easily accessible, natural, two-species colonization model, and (ii) quorum sensing regulates luminescence expression in V. fischeri, which allows the non-invasive detection of quorum-sensing activity both in culture and in symbiosis. While the impact of one of V. fischeri's quorum-sensing systems, lux, on luminescence expression and symbiotic competence has been extensively studied, little was known about other putative systems.; The results of this study demonstrate that the V. fischeri ain system is essential for both maximal luminescence expression and symbiotic competence. The ain system predominantly induces luminescence expression at intermediate cell densities, which occur in culture, while the lux system is responsible for luminescence expression at the high cell densities found in symbiosis, suggesting the sequential induction of luminescence gene expression by these two systems. Furthermore, the ain quorum-sensing system is important for the processes underlying colonization initiation, while the impact of the lux system is apparent only in later stages of the symbiosis, indicating distinct functions of these two systems during the colonization process. A global transcriptome analysis of quorum-sensing mutants revealed that ain quorum sensing represses motility gene expression, providing a likely explanation for the initiation defect. Although it has been known that many bacterial species possess multiple quorum-sensing systems, this is the first study demonstrating that two quorum-sensing systems are employed to specifically regulate functions important at distinct cell densities occurring during the colonization process.
机译:群体感应是一种细胞密度依赖性细菌基因调控机制,用于表达定植相关基因。发光细菌费氏弧菌与夏威夷短尾鱿鱼 Euprymna scolopes 之间的共生关系成为研究细菌定殖的分子过程的模型系统。该系统特别适合用于研究群体感应对定居的影响,因为(i)它是一种易于获取的自然两物种定居模型,并且(ii)群体感应调节 V中的发光表达。 fischeri ,可以无创地检测文化和共生中的群体感应活动。而 V之一的影响。 Fischeri的群体感应系统勒克斯(lux)在发光表达和共生能力方面得到了广泛的研究,对其他推定系统知之甚少。这项研究的结果表明 V。 fischeri in系统对于最大的发光表达和共生能力至关重要。 ain系统主要诱导培养中出现的中等细胞密度的发光表达,而lux系统负责共生中发现的高细胞密度的发光表达,表明这两个系统依次诱导了发光基因的表达。此外,ain群体感应系统对于定殖开始的过程很重要,而lux系统的影响仅在共生的后期才明显,表明这两个系统在定殖过程中具有独特的功能。群体感应突变体的全局转录组分析显示,群体感应可以抑制运动基因的表达,为起始缺陷提供了可能的解释。尽管已经知道许多细菌物种具有多个群体感应系统,但这是第一个证明使用两个群体感应系统来专门调节在定殖过程中发生的不同细胞密度重要的功能的研究。

著录项

  • 作者

    Lupp, Claudia.;

  • 作者单位

    University of Hawai'i.;

  • 授予单位 University of Hawai'i.;
  • 学科 Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

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