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rpoS在大肠杆菌生物膜成熟过程中的意义

Significance of rpoS during maturation of Escherichia coli biofilms.

作者信息

Ito Akinobu, May Thithiwat, Kawata Koji, Okabe Satoshi

机构信息

Department of Urban and Environmental Engineering, Graduate School of Engineering, Hokkaido University, North-13, West-8, Sapporo 060-08628, Japan.

出版信息

Biotechnol Bioeng. 2008 Apr 15;99(6):1462-71. doi: 10.1002/bit.21695.

Abstract

Presence of starved, stationary phase-like zones in biofilms seems to be an important factor for biofilm formation. In this study, roles of rpoS gene in the formation of Escherichia coli biofilms were investigated. E. coli MG1655 wild type (WT) and rpoS mutant (DeltarpoS) strains were used to compare biofilm formation capacity and global gene expression. Even though the DeltarpoS strain could attach and form microcolonies on glass surfaces, it could not establish mature biofilms. DNA microarray analysis revealed that WT biofilms (WBF) showed similar pattern of gene expression with WT planktonic stationary phase, whereas DeltarpoS biofilms (MBF) showed similar pattern of gene expression with WT planktonic exponential phase. Genes involved in energy metabolism (atpIBEFHAG, atpC, cydAB) and flagella synthesis (flgB, flgC, flhD, fliA, fliC, fliY) showed increased expression in the MBF, but not in the WBF. Moreover, genes involved in stress responses (blc, cspG, dinD poxB, wcaF, wcaI, and yfcF) showed increased expression in the WBF compared to the MBF. These results suggested that the rpoS gene contributed in maturation of E. coli biofilms through regulation of global gene expression including energy metabolism, motility, and stress responses.

摘要

生物膜中饥饿、静止期样区域的存在似乎是生物膜形成的一个重要因素。在本研究中,研究了rpoS基因在大肠杆菌生物膜形成中的作用。使用大肠杆菌MG1655野生型(WT)和rpoS突变体(DeltarpoS)菌株来比较生物膜形成能力和全局基因表达。尽管DeltarpoS菌株能够在玻璃表面附着并形成微菌落,但它无法形成成熟的生物膜。DNA微阵列分析显示,WT生物膜(WBF)与WT浮游静止期显示出相似的基因表达模式,而DeltarpoS生物膜(MBF)与WT浮游指数期显示出相似的基因表达模式。参与能量代谢(atpIBEFHAG、atpC、cydAB)和鞭毛合成(flgB、flgC、flhD、fliA、fliC、fliY)的基因在MBF中表达增加,但在WBF中未增加。此外,与应激反应相关的基因(blc、cspG、dinD poxB、wcaF、wcaI和yfcF)在WBF中的表达相对于MBF增加。这些结果表明,rpoS基因通过调节包括能量代谢、运动性和应激反应在内的全局基因表达,促进了大肠杆菌生物膜的成熟。

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