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鼠李糖脂调节铜绿假单胞菌的群体游动模式。

Rhamnolipids modulate swarming motility patterns of Pseudomonas aeruginosa.

作者信息

Caiazza Nicky C, Shanks Robert M Q, O'Toole G A

机构信息

Department of Microbiology and Immunology, Rm. 505, Vail Building, Dartmouth Medical School, Hanover, NH 03755, USA.

出版信息

J Bacteriol. 2005 Nov;187(21):7351-61. doi: 10.1128/JB.187.21.7351-7361.2005.

DOI:10.1128/JB.187.21.7351-7361.2005
PMID:16237018
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1273001/
Abstract

Pseudomonas aeruginosa is capable of twitching, swimming, and swarming motility. The latter form of translocation occurs on semisolid surfaces, requires functional flagella and biosurfactant production, and results in complex motility patterns. From the point of inoculation, bacteria migrate as defined groups, referred to as tendrils, moving in a coordinated manner capable of sensing and responding to other groups of cells. We were able to show that P. aeruginosa produces extracellular factors capable of modulating tendril movement, and genetic analysis revealed that modulation of these movements was dependent on rhamnolipid biosynthesis. An rhlB mutant (deficient in mono- and dirhamnolipid production) and an rhlC mutant (deficient in dirhamnolipid production) exhibited altered swarming patterns characterized by irregularly shaped tendrils. In addition, agar supplemented with rhamnolipid-containing spent supernatant inhibited wild-type (WT) swarming, whereas agar supplemented with spent supernatant from mutants that do not make rhamnolipids had no effect on WT P. aeruginosa swarming. Addition of purified rhamnolipids to swarming medium also inhibited swarming motility of the WT strain. We also show that a sadB mutant does not sense and/or respond to other groups of swarming cells and this mutant was capable of swarming on media supplemented with rhamnolipid-containing spent supernatant or purified rhamnolipids. The abilities to produce and respond to rhamnolipids in the context of group behavior are discussed.

摘要

铜绿假单胞菌能够进行颤动、游动和群体运动。后一种转移形式发生在半固体表面,需要功能性鞭毛和生物表面活性剂的产生,并导致复杂的运动模式。从接种点开始,细菌以特定的群体形式迁移,称为卷须,以一种能够感知其他细胞群体并做出反应的协调方式移动。我们能够证明铜绿假单胞菌产生能够调节卷须运动的细胞外因子,并且遗传分析表明这些运动的调节依赖于鼠李糖脂的生物合成。一个rhlB突变体(缺乏单鼠李糖脂和双鼠李糖脂的产生)和一个rhlC突变体(缺乏双鼠李糖脂的产生)表现出改变的群体运动模式,其特征是卷须形状不规则。此外,添加含有鼠李糖脂的废上清液的琼脂抑制野生型(WT)的群体运动,而添加不产生鼠李糖脂的突变体的废上清液的琼脂对野生型铜绿假单胞菌的群体运动没有影响。向群体运动培养基中添加纯化的鼠李糖脂也抑制了野生型菌株的群体运动。我们还表明,一个sadB突变体不能感知和/或响应其他群体运动的细胞,并且该突变体能够在添加了含有鼠李糖脂的废上清液或纯化鼠李糖脂的培养基上进行群体运动。本文讨论了在群体行为背景下产生和响应鼠李糖脂

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A signaling network reciprocally regulates genes associated with acute infection and chronic persistence in Pseudomonas aeruginosa.一个信号网络相互调节与铜绿假单胞菌急性感染和慢性持续性相关的基因。
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