Description of novel resistance islands harbouring blaCTX-M-2 in IncC type 2 plasmids

R Papa-Ezdra1, N F Cordeiro1, V Di Pilato2

  • 1Departamento de Bacteriología y Virología, Instituto de Higiene, Facultad de Medicina, Universidad de la República, Montevideo, Uruguay.

Abstract

Insights

Two Klebsiella pneumoniae plasmids carrying blaCTX-M-2 were sequenced, revealing complex transposons Tn7057 and Tn7058. These IncC plasmids contribute to understanding antibiotic resistance islands.

Area of Science:

  • Microbiology
  • Genetics

Background:

  • Extended-spectrum β-lactamases (ESBLs) like CTX-M-2 are significant in clinical settings.
  • IncA/C plasmids are known vehicles for antibiotic resistance gene dissemination.

Purpose of the Study:

  • To characterize the molecular structure of two IncA/C plasmids harbouring blaCTX-M-2 in Klebsiella pneumoniae.
  • To compare the antibiotic resistance islands within these plasmids.

Main Methods:

  • Whole-genome sequencing of transconjugant plasmids.
  • Plasmid assembly, gap closure via PCR and sequencing.
  • Identification of replicons, resistance genes, and insertion sequence elements.

Main Results:

  • The blaCTX-M-2 gene was found within complex class 1 integrons inserted into two distinct transposons, Tn7057 and Tn7058.
  • Both transposons shared common modules but had variable regions, with Tn7057 containing additional resistance genes.
  • The plasmids, pUR-KP0923 and pUR-KP1025, were identified as IncC type 2 ST3, with large resistance islands (RI-4).

Conclusions:

  • The study details the molecular architecture of two novel transposons, Tn7057 and Tn7058, carrying blaCTX-M-2 on IncC plasmids.
  • These transposons confer resistance to multiple antibiotics, including oxyimino-cephalosporins and gentamicin.
  • The findings enhance understanding of resistance island evolution within IncC type 2 plasmids, relevant to South American epidemiology.

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