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Mechanism of chromosomal transfer of Enterococcus faecalis pathogenicity island capsule antimicrobial resistance and other traits

机译:粪肠球菌致病岛胶囊抗菌素耐药性及其他特征的染色体转移机制

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摘要

The Enterococcus faecalis pathogenicity island (PAI) encodes known virulence traits and >100 additional genes with unknown roles in enterococcal biology. Phage-related integration and excision genes, and direct repeats flanking the island, suggest it moves as an integrative conjugative element (ICE). However, transfer was observed not to require these genes. Transfer only occurred from donors possessing a pheromone responsive-type of conjugative plasmid, and was invariably accompanied by transfer of flanking donor chromosome sequences. Deletion of plasmid transfer functions, including the cis-acting origin of transfer (oriT), abolished movement. In addition to demonstrating PAI movement by a mechanism involving plasmid integration, we observed transfer of a selectable marker placed virtually anywhere on the chromosome. Transfer of this selectable marker was observed to be accompanied by chromosome-chromosome transfer of vancomycin resistance, MLST markers, and capsule genes as well. Plasmid mobilization therefore appears to be a major mechanism for horizontal gene transfer in the evolution of antibiotic resistant E. faecalis strains capable of causing human infection.
机译:粪肠球菌致病岛(PAI)编码已知的毒力性状和在肠球菌生物学中作用未知的100多个其他基因。噬菌体相关的整合和切除基因,以及该岛两侧的直接重复序列,表明它作为整合共轭元件(ICE)迁移。但是,观察到转移不需要这些基因。转移仅发生于具有信息素响应型结合质粒的供体,并且总是伴随着侧翼供体染色体序列的转移。质粒转移功能的删除,包括顺式作用转移起点(oriT),消除了运动。除了通过涉及质粒整合的机制证明PAI的运动外,我们还观察到了几乎位于染色体上任何位置的选择标记的转移。观察到该选择标记的转移伴随着万古霉素抗性,MLST标记和胶囊基因的染色体-染色体转移。因此,在能够引起人感染的抗生素抗性粪肠球菌菌株的进化中,质粒动员似乎是水平基因转移的主要机制。

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