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The Evolution of Multidrug Resistance in a Hospital Pathogen

机译:医院病原菌多药耐药性的演变

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The recent emergence of multidrug resistance(MDR) in Acinetobacter baumannii has raised concern in health care settings worldwide. In order to understand the repertoire of resistance determinants and their organization and origins, we compared the genome sequences of three MDR and three drug-susceptible A. baumannii isolates. The entire MDR phenotype can be explained by the acquisition of discrete resistance determinants distributed throughout the genome. A resistance island (RI) with a variable composition of resistance determinants interspersed with transposons, integrons, and other mobile genetic elements is a significant, but not universal, contributor to the MDR phenotype. Variable resistance gene composition amongidentical clone types from a single outbreak suggests dynamic and active horizontal transfer. 475 genes are shared among all six clinical isolates, but absent from the related environmental species Acinetobacter baylyi ADP1.These genes are enriched for transcription factors and transporters and suggest physiological features of A.baumannii that are related to adaptation for growth in association with humans.
机译:不动杆菌(Acinetobacter),鲍曼不动杆菌(Baumannii)中最近出现的多药耐药性(MDR)在全世界的医疗机构中引起了人们的关注。为了了解抗性决定簇的组成及其组成和来源,我们比较了三种MDR和三种药物敏感性鲍曼不动杆菌的基因组序列。整个MDR表型可以通过获取分布在整个基因组中的离散抗性决定簇来解释。抗性决定簇组成可变的抗性岛(RI)散布有转座子,整合子和其他可移动的遗传元件,是MDR表型的重要贡献者,但并非普遍存在。一次暴发的相同克隆类型之间的抗药性基因组成可变,提示动态和主动水平转移。在所有六个临床分离株中共有475个基因,但相关的环境物种不动杆菌 baylyi ADP1却不存在。这些基因富含转录因子和转运蛋白,提示A的生理特征。 baumannii 与人类的生长适应有关。

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