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Comprehensive genome data analysis establishes a triple whammy of carbapenemases ICEs and multiple clinically relevant bacteria

机译:综合基因组数据分析建立了三重核心酶冰和多个临床相关细菌的三重鞭子

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摘要

Carbapenemases inactivate most β-lactam antibiotics, including carbapenems, and have frequently been reported among Enterobacteriaceae, Acinetobacter spp. and Pseudomonas spp. Traditionally, the horizontal gene transfer of carbapenemase-encoding genes (CEGs) has been linked to plasmids. However, given that integrative and conjugative elements (ICEs) are possibly the most abundant conjugative elements among prokaryotes, we conducted an in silico analysis to ascertain the likely role of ICEs in the spread of CEGs among all bacterial genomes (n=182 663). We detected 17 520 CEGs, of which 66 were located within putative ICEs among several bacterial species (including clinically relevant bacteria, such as Pseudomonas aeruginosa, Klebsiella pneumoniae and Escherichia coli). Most CEGs detected within ICEs belong to the IMP, NDM and SPM metallo-beta-lactamase families, and the serine beta-lactamase KPC and GES families. Different mechanisms were likely responsible for acquisition of these genes. The majority of CEG-bearing ICEs belong to the MPFG, MPFT and MPFF classes and often encode resistance to other antibiotics (e.g. aminoglycosides and fluoroquinolones). This study provides a snapshot of the different CEGs associated with ICEs among available bacterial genomes and sheds light on the underappreciated contribution of ICEs to the spread of carbapenem resistance globally.
机译:碳结氨酸酶灭活大多数β-内酰胺抗生素,包括鲤鱼蛋白,并且经常被报告enterobacteriaceae.那acinetobacter SPP。和假单胞菌 SPP。传统上,碳结构酶编码基因(CEG)的水平基因转移已与质粒有关。然而,鉴于整合和缀合元素(谢谢)可能是原核生物中最丰富的共轭元素,我们在硅分析中进行了一个在硅分析中,以确定谢谢在所有细菌基因组中切断冰的可能作用(n = 182 663)。我们检测到17520个CEG,其中66个位于几种细菌物种(包括临床相关的细菌)中的推定冰中。假单胞菌铜绿假单胞菌那Klebsiella肺炎 和大肠杆菌)。在谢内检测到的大多数CEG属于IMP,NDM和SPM Metallo-β-内酰胺酶系列,以及丝氨酸β-内酰胺酶KPC和GES系列。不同机制可能负责获取这些基因。大多数CEG承载素属于MPFG,MPFT和MPFF类,并且通常编码对其他抗生素的抗性(例如氨基糖苷类和氟喹诺酮类药物)。本研究提供了与可用细菌基因组中的不同CEG相关的不同CEG的快照,并在全球范围内对冰川抗性的销售的低估贡献揭示。

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