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Genomic Plasticity of Multidrug-Resistant NDM-1 Positive Clinical Isolate of Providencia rettgeri

机译:瑞氏普罗威登斯氏菌多药耐药NDM-1阳性临床分离株的基因组可塑性

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摘要

We performed a detailed whole-genome sequence analysis of Providencia rettgeri H1736, a multidrug-resistant clinical pathogen isolated in Israel in 2011. The objective was to describe the genomic flexibility of this bacterium that has greatly contributed to its pathogenicity. The genome has a chromosome size of 4,609,352 bp with 40.22% GC content. Five plasmids were predicted, as well as other mobile genetic elements (MGEs) including phages, genomic islands, and integrative and conjugative elements. The resistome consisted of a total of 27 different antibiotic resistance genes including blaNDM-1, mostly located on MGEs. Phenotypically, the bacteria displayed resistance to a total of ten different antimicrobial classes. Various features such as metabolic operons (including a novel carbapenem biosynthesis operon) and virulence genes were also borne on the MGEs, making P. rettgeri H1736 significantly different from other P. rettgeri isolates. A large quantity of the genetic diversity that exists in P. rettgeri H1736 was due to extensive horizontal gene transfer events, leading to an enormous presence of MGEs in its genome. Most of these changes contributed toward the pathogenic evolution of this bacterium.
机译:我们对于2011年在以色列分离的多药耐药临床病原体Providencia rettgeri H1736进行了详细的全基因组序列分析。目的是描述该细菌的基因组灵活性,极大地促进了其致病性。该基因组的染色体大小为4,609,352 bp,GC含量为40.22%。预测了五个质粒以及其他可移动遗传元件(MGE),包括噬菌体,基因组岛以及整合和结合元件。抵抗组由总共27种不同的抗生素抗性基因组成,包括blaNDM-1,大部分位于MGE上。从表型上看,细菌显示出对总共十种不同抗菌剂的抗药性。代谢操纵子(包括新型碳青霉烯生物合成操纵子)和毒力基因等各种特征也都携带在MGE上,这使得瑞氏疟原虫H1736与其他瑞氏疟原虫分离株明显不同。瑞氏假单胞菌H1736中存在大量的遗传多样性是由于广泛的水平基因转移事件,导致其基因组中大量存在MGE。这些变化大多数促成了该细菌的致病性进化。

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