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荧光假单胞菌WCS365生物膜形成的起始通过多种趋同信号通路进行:一项遗传学分析。

Initiation of biofilm formation in Pseudomonas fluorescens WCS365 proceeds via multiple, convergent signalling pathways: a genetic analysis.

作者信息

O'Toole G A, Kolter R

机构信息

Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Mol Microbiol. 1998 May;28(3):449-61. doi: 10.1046/j.1365-2958.1998.00797.x.

Abstract

Populations of surface-attached microorganisms comprising either single or multiple species are commonly referred to as biofilms. Using a simple assay for the initiation of biofilm formation (e.g. attachment to an abiotic surface) by Pseudomonas fluorescens strain WCS365, we have shown that: (i) P. fluorescens can form biofilms on an abiotic surface when grown on a range of nutrients; (ii) protein synthesis is required for the early events of biofilm formation; (iii) one (or more) extracytoplasmic protein plays a role in interactions with an abiotic surface; (iv) the osmolarity of the medium affects the ability of the cell to form biofilms. We have isolated transposon mutants defective for the initiation of biofilm formation, which we term surface attachment defective (sad). Molecular analysis of the sad mutants revealed that the ClpP protein (a component of the cytoplasmic Clp protease) participates in biofilm formation in this organism. Our genetic analyses suggest that biofilm formation can proceed via multiple, convergent signalling pathways, which are regulated by various environmental signals. Finally, of the 24 sad mutants analysed in this study, only three had defects in genes of known function. This result suggests that our screen is uncovering novel aspects of bacterial physiology.

摘要

由单一物种或多个物种组成的附着在表面的微生物群体通常被称为生物膜。通过一种简单的检测荧光假单胞菌菌株WCS365生物膜形成起始(例如附着在非生物表面)的方法,我们已经表明:(i)荧光假单胞菌在一系列营养物质上生长时能够在非生物表面形成生物膜;(ii)蛋白质合成是生物膜形成早期事件所必需的;(iii)一种(或多种)胞外蛋白在与非生物表面的相互作用中起作用;(iv)培养基的渗透压影响细胞形成生物膜的能力。我们分离出了生物膜形成起始缺陷的转座子突变体,我们将其称为表面附着缺陷型(sad)。对sad突变体的分子分析表明,ClpP蛋白(细胞质Clp蛋白酶的一个组分)参与了该生物体中的生物膜形成。我们的遗传分析表明,生物膜形成可以通过多种趋同的信号通路进行,这些信号通路受各种环境信号的调节。最后,在本研究中分析的24个sad突变体中,只有三个在已知功能的基因中有缺陷。这一结果表明我们的筛选正在揭示细菌生理学的新方面。

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