Within-patient and global evolutionary dynamics of Klebsiella pneumoniae ST17

Marit A K Hetland1,2, Jane Hawkey3, Eva Bernhoff1

  • 1Department of Medical Microbiology, Stavanger University Hospital, Stavanger, Norway.

Microbial Genomics
|May 18, 2023
PubMed

Insights

Multidrug-resistant Klebsiella pneumoniae sequence type 17 (ST17) causes global hospital infections. Within-host evolution showed ST17 stability, with persistent carriage of a specific plasmid, highlighting its role in healthcare-associated infections.

Area of Science:

  • Microbiology
  • Genomics
  • Epidemiology

Background:

  • Klebsiella pneumoniae sequence type 17 (ST17) is a globally significant multidrug-resistant (MDR) clone responsible for hospital-acquired infections.
  • An outbreak of MDR ST17 in a Norwegian neonatal intensive care unit (NICU) in 2008-2009 led to colonization in 57 infants, with persistent intestinal carriage observed for up to two years.

Purpose of the Study:

  • To investigate the within-host evolution of ST17 during long-term colonization in pediatric patients.
  • To compare the genetic characteristics of outbreak-related ST17 strains with a global collection of ST17 isolates.
  • To understand the evolutionary history and diversification of ST17 globally.

Main Methods:

  • Whole-genome sequencing of 92 outbreak-related ST17 isolates.
  • Comparative genomic analysis of outbreak strains and 254 global ST17 strains from diverse sources (human, animal, environment).
  • Phylogenetic analysis to determine the evolutionary emergence and diversification of ST17 lineages.

Main Results:

  • Within-host ST17 colonization remained genetically stable, characterized by few single nucleotide polymorphisms and no acquisition of new antimicrobial resistance (AMR) or virulence factors.
  • Outbreak strains possessed capsule locus KL25, O locus O5, and carried yersiniabactin and a blaCTX-M-15-encoding plasmid (pKp2177_1).
  • Global ST17 strains, emerging in the mid-to-late 19th century, diversified into sublineages with varying AMR genes and plasmids; a KL25/O5 sublineage, including the Norwegian outbreak clone, is globally disseminated.

Conclusions:

  • ST17 is a globally disseminated opportunistic pathogen associated with healthcare-associated infections, contributing significantly to the global burden of MDR infections.
  • Despite the emergence of diverse lineages, many ST17 strains persist without acquired AMR, suggesting alternative survival strategies.
  • Non-human sources and prolonged human colonization are hypothesized to be crucial reservoirs for ST17, posing risks to vulnerable populations like preterm neonates.

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