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Dissecting communication in microbial communities.

机译:剖析微生物群落中的交流。

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摘要

The aim of our work is to identify novel molecules that interact with quorum sensing systems mediated by N-acyl homoserine laetone (AHL) signal molecules and to study the role of quorum sensing in the environments where these signals are produced. Initially, we surveyed libraries of synthetic compounds and metagenomic libraries for inducers and inhibitors of quorum sensing. I developed a high throughput screen to identify small molecules that activate or inhibit AHL-mediated cell-cell communication. In a library of 16,000 structurally diverse compounds, I identified nine antagonists and fourteen agonists of LasR-mediated quorum sensing. I also devised an intracellular screen to identify metagenomic clones that induce or inhibit a quorum sensing biosensor that a traditional overlay screen would not have detected. This screen identified a novel signal mimic from the uncultivated microbiota residing in the gypsy moth midgut, novel LuxIR homologues, and a functional LuxIR regulon with extremely low similarity to known LuxIR homologues from microorganisms in soil. This work expands our understanding of quorum sensing to include the uncultivated bacteria, which represent the majority of bacteria in most environments.; In order to gain a better understanding of the role of communication in a community of bacteria, I studied the effects of disrupting signaling in the bacterial community residing in the cabbage white butterfly (CWB) larval midgut. As an initial step to determine whether AHL signals are exchanged in the highly alkaline environment of the midgut, I constructed AHL-sensing bioluminescent reporter strains in the wild type Pantoea and an AHL-deficient mutant of this strain. The biosensors detected AHLs produced and exchanged by Pantoea in the midgut of CWB larvae. I also examined the role of signals in pathogenesis produced by Pseudomonas aeruginosa PA01. Mortality induced by P. aeruginosa PA01 was significantly reduced by interfering with signaling either by introducing a P. aeruginosa signaling mutant or administering a potent inhibitor of quorum sensing to the insect. These results are the first report of the functional exchange of AHLs among bacteria in the alkaline environment of the CWB larval midgut.
机译:我们的工作目的是确定与N-酰基高丝氨酸la内酯(AHL)信号分子介导的群体感应系统相互作用的新型分子,并研究群体感应在产生这些信号的环境中的作用。最初,我们调查了合成化合物库和宏基因组库中的群体感应诱导剂和抑制剂。我开发了高通量筛选器,以识别可激活或抑制AHL介导的细胞间通讯的小分子。在一个包含16,000种结构多样的化合物的库中,我确定了LasR介导的群体感应的9种拮抗剂和14种激动剂。我还设计了一种细胞内筛查技术来识别宏基因组克隆,这些基因组克隆可诱导或抑制传统叠加筛查无法检测到的群体感应生物传感器。此屏幕从吉普赛蛾中肠中未培养的微生物群中识别出一种新型信号模拟物,新型LuxIR同源物和功能性LuxIR调控子,其与土壤微生物中已知的LuxIR同源物的相似性极低。这项工作将我们对群体感应的理解扩展到包括未培养的细菌,这些细菌代表了大多数环境中的大多数细菌。为了更好地了解交流在细菌群落中的作用,我研究了居住在甘蓝白蝴蝶(CWB)幼虫中肠的细菌群落中破坏信号传导的影响。作为确定在中肠的高碱性环境中是否交换AHL信号的第一步,我在野生型泛菌中构建了AHL敏感的生物发光报告基因菌株以及该菌株的AHL缺陷型突变体。生物传感器检测到在CWB幼虫中肠中Pantoea产生和交换的AHL。我还检查了信号在铜绿假单胞菌PA01产生的发病机理中的作用。通过引入铜绿假单胞菌信号转导突变体或向昆虫施用有效的群体感应抑制剂干扰信号转导,可以大大降低铜绿假单胞菌PA01诱导的死亡率。这些结果是在CWB幼虫中肠碱性环境中细菌之间AHLs功能交换的首次报道。

著录项

  • 作者

    Borlee, Bradley Robert.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Biology Microbiology.; Agriculture Plant Pathology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;植物病理学;
  • 关键词

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