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从牙科设备水管中分离出的环境铜绿假单胞菌的基因组特征显示,插入序列ISPa11是一种离液序列高变区元件。

Genomic characterisation of environmental Pseudomonas aeruginosa isolated from dental unit waterlines revealed the insertion sequence ISPa11 as a chaotropic element.

作者信息

Vincent Antony T, Freschi Luca, Jeukens Julie, Kukavica-Ibrulj Irena, Emond-Rheault Jean-Guillaume, Leduc Annie, Boyle Brian, Jean-Pierre Fabrice, Groleau Marie-Christine, Déziel Eric, Barbeau Jean, Charette Steve J, Levesque Roger C

机构信息

Institut de biologie intégrative et des systèmes (IBIS), Pavillon Charles-Eugène-Marchand, 1030 avenue de la Médecine, Université Laval, Quebec City G1V 0A6, Canada.

Centre de recherche de l'Institut universitaire de cardiologie et de pneumologie de Québec (CRIUCPQ), 2725 Chemin Ste-Foy, Quebec City G1V 4G5, Canada.

出版信息

FEMS Microbiol Ecol. 2017 Sep 1;93(9). doi: 10.1093/femsec/fix106.

Abstract

The bacterium Pseudomonas aeruginosa is well known to have a remarkable adaptive capacity allowing it to colonise many environments. A recent study on environmental isolates from dental unit waterlines (DUWLs) hinted at a genetic clustering into two groups. Isolates from one of these groups, named cluster III, were shown to have unusual phenotypes for environmental isolates, such as an increased biofilm production. To have a better ecological view, more specifically on isolates from cluster III, the complete genomes of 39 isolates including 16 from DUWLs were sequenced. In addition to an investigation of antibiotic resistance and secretion system gene content, a molecular phylogeny allowed confirmation of the split of the 16 environmental isolates in two groups and also sheds light on a correlation between the phylogenetic positions and the serotypes of the isolates. Isolates from cluster III harboured insertion sequences ISPa11 inserted into the O-specific antigen biosynthesis clusters and the gene lasR, encoding for a master regulator of the quorum sensing. Investigation of key regulators revealed another truncated gene, gacS. Alteration in lasR and gacS genes was consistent with phenotypic assays confirming their inactivation. These results bring new perspectives regarding the ecological adaptive potential of P. aeruginosa.

摘要

铜绿假单胞菌以其卓越的适应能力而闻名,使其能够在多种环境中定殖。最近一项关于牙科设备水线(DUWLs)环境分离株的研究暗示这些分离株在基因上可分为两组。其中一组名为簇III的分离株,对于环境分离株而言表现出异常的表型,例如生物膜产量增加。为了更全面地了解生态学情况,特别是针对簇III的分离株,对包括16株来自DUWLs的39株分离株的全基因组进行了测序。除了对抗生素抗性和分泌系统基因含量进行研究外,分子系统发育分析证实了16株环境分离株分为两组,同时也揭示了分离株的系统发育位置与血清型之间的相关性。簇III的分离株含有插入到O特异性抗原生物合成簇和编码群体感应主要调节因子的lasR基因中的插入序列ISPa11。对关键调节因子的研究发现了另一个截短的基因gacS。lasR和gacS基因的改变与表型分析结果一致,证实了它们的失活。这些结果为铜绿假单胞菌的生态适应潜力带来了新的视角。

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