Global genomic epidemiology of blaGES-5 carbapenemase-associated integrons
Matlock, W.; Shaw, L. P.; Stoesser, N.
Show abstract
Antimicrobial resistance (AMR) gene cassettes comprise an AMR gene flanked by short recombination sites (attI x attC or attC x attC). Integrons are genetic elements able to capture, excise, and shuffle these cassettes, providing adaptation on demand, and can be found on both chromosomes and plasmids. Understanding the patterns of integron diversity may help to understand the epidemiology of AMR genes. As a case study, we examined the clinical resistance gene blaGES-5, an integron-associated class A carbapenemase first reported in Greece in 2004 and since observed worldwide, which to our knowledge has not been the subject of a previous global analysis. Using a dataset comprising all NCBI contigs containing blaGES-5 (n = 431), we developed a pangenome graph-based workflow to characterise and cluster the diversity of blaGES-5 -associated integrons. We demonstrate that blaGES-5-associated integrons on plasmids are different to those on chromosomes. Chromosomal integrons were almost all identified in P. aeruginosa ST235, with a consistent gene cassette content and order. We observed instances where insertion sequence IS110 disrupted attC sites, which might immobilise the gene cassettes and explain the conserved integron structure despite the presence of intI1 integrase promoters, which would typically facilitate capture or excision and rearrangement. The plasmid-associated integrons were more diverse in their gene cassette content and order, which could be an indication of greater integrase activity and shuffling of integrons on plasmids.
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