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Genomic dissection of endemic carbapenem resistance reveals metallo-beta-lactamase dissemination through clonal, plasmid and integron transfer

Author

Listed:
  • Nenad Macesic

    (Monash University
    Monash University)

  • Jane Hawkey

    (Monash University)

  • Ben Vezina

    (Monash University)

  • Jessica A. Wisniewski

    (Monash University)

  • Hugh Cottingham

    (Monash University)

  • Luke V. Blakeway

    (Monash University)

  • Taylor Harshegyi

    (Monash University)

  • Katherine Pragastis

    (Monash University)

  • Gnei Zweena Badoordeen

    (Monash University)

  • Amanda Dennison

    (Microbiology Unit, Alfred Hospital)

  • Denis W. Spelman

    (Monash University
    Microbiology Unit, Alfred Hospital)

  • Adam W. J. Jenney

    (Monash University
    Microbiology Unit, Alfred Hospital)

  • Anton Y. Peleg

    (Monash University
    Monash University
    Monash University)

Abstract

Infections caused by metallo-beta-lactamase-producing organisms (MBLs) are a global health threat. Our understanding of transmission dynamics and how MBLs establish endemicity remains limited. We analysed two decades of blaIMP-4 evolution in a hospital using sequence data from 270 clinical and environmental isolates (including 169 completed genomes) and identified the blaIMP-4 gene across 7 Gram-negative genera, 68 bacterial strains and 7 distinct plasmid types. We showed how an initial multi-species outbreak of conserved IncC plasmids (95 genomes across 37 strains) allowed endemicity to be established through the ability of blaIMP-4 to disseminate in successful strain-genetic setting pairs we termed propagators, in particular Serratia marcescens and Enterobacter hormaechei. From this reservoir, blaIMP-4 persisted through diversification of genetic settings that resulted from transfer of blaIMP-4 plasmids between bacterial hosts and of the integron carrying blaIMP-4 between plasmids. Our findings provide a framework for understanding endemicity and spread of MBLs and may have broader applicability to other carbapenemase-producing organisms.

Suggested Citation

  • Nenad Macesic & Jane Hawkey & Ben Vezina & Jessica A. Wisniewski & Hugh Cottingham & Luke V. Blakeway & Taylor Harshegyi & Katherine Pragastis & Gnei Zweena Badoordeen & Amanda Dennison & Denis W. Spe, 2023. "Genomic dissection of endemic carbapenem resistance reveals metallo-beta-lactamase dissemination through clonal, plasmid and integron transfer," Nature Communications, Nature, vol. 14(1), pages 1-12, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-39915-2
    DOI: 10.1038/s41467-023-39915-2
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    References listed on IDEAS

    as
    1. Chirag Jain & Luis M. Rodriguez-R & Adam M. Phillippy & Konstantinos T. Konstantinidis & Srinivas Aluru, 2018. "High throughput ANI analysis of 90K prokaryotic genomes reveals clear species boundaries," Nature Communications, Nature, vol. 9(1), pages 1-8, December.
    2. Leah W. Roberts & Patrick N. A. Harris & Brian M. Forde & Nouri L. Ben Zakour & Elizabeth Catchpoole & Mitchell Stanton-Cook & Minh-Duy Phan & Hanna E. Sidjabat & Haakon Bergh & Claire Heney & Jayde A, 2020. "Integrating multiple genomic technologies to investigate an outbreak of carbapenemase-producing Enterobacter hormaechei," Nature Communications, Nature, vol. 11(1), pages 1-11, December.
    Full references (including those not matched with items on IDEAS)

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