Linear plasmids in Klebsiella and other Enterobacteriaceae

Author:

Hawkey Jane1ORCID,Cottingham Hugh1,Tokolyi Alex2ORCID,Wick Ryan R.1ORCID,Judd Louise M.1ORCID,Cerdeira Louise3ORCID,de Oliveira Garcia Doroti4ORCID,Wyres Kelly L.1ORCID,Holt Kathryn E.51ORCID

Affiliation:

1. Department of Infectious Diseases, Central Clinical School, Monash University, Melbourne, Victoria 3004, Australia

2. Department of Human Genetics, Wellcome Sanger Institute, Hinxton, UK

3. Liverpool School of Tropical Medicine, Liverpool L3 5QA, UK

4. Regional Laboratory Center, Adolfo Lutz Institute, Marilia, Brazil

5. Department of Infection Biology, London School of Hygiene and Tropical Medicine, London WC1E 7HT, UK

Abstract

Linear plasmids are extrachromosomal DNA elements that have been found in a small number of bacterial species. To date, the only linear plasmids described in the family Enterobacteriaceae belong to Salmonella , first found in Salmonella enterica Typhi. Here, we describe a collection of 12 isolates of the Klebsiella pneumoniae species complex in which we identified linear plasmids. Screening of assembly graphs assembled from public read sets identified linear plasmid structures in a further 13 K . pneumoniae species complex genomes. We used these 25 linear plasmid sequences to query all bacterial genome assemblies in the National Center for Biotechnology Information database, and discovered an additional 61 linear plasmid sequences in a variety of Enterobacteriaceae species. Gene content analysis divided these plasmids into five distinct phylogroups, with very few genes shared across more than two phylogroups. The majority of linear plasmid-encoded genes are of unknown function; however, each phylogroup carried its own unique toxin–antitoxin system and genes with homology to those encoding the ParAB plasmid stability system. Passage in vitro of the 12 linear plasmid-carrying Klebsiella isolates in our collection (which include representatives of all five phylogroups) indicated that these linear plasmids can be stably maintained, and our data suggest they can transmit between K. pneumoniae strains (including members of globally disseminated multidrug-resistant clones) and also between diverse Enterobacteriaceae species. The linear plasmid sequences, and representative isolates harbouring them, are made available as a resource to facilitate future studies on the evolution and function of these novel plasmids.

Funder

Sylvia and Charles Viertel Charitable Foundation

Bill and Melinda Gates Foundation

Publisher

Microbiology Society

Subject

General Medicine

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