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Published on: May 4, 2018
Klebsiella pneumoniae sequence type 147: a high-risk clone increasingly associated with plasmids carrying both
Jane F Turton1, Claire Perry2, Kim McGowan2
1HealthCare Associated Infections, Fungal, Antimicrobial Resistance, Antimicrobial Use and Sepsis Division, UK Health Security Agency, 61, Colindale Avenue, London NW9 5HT, UK.
Abstract:
Introduction. The first hybrid resistance/virulence plasmid, combining elements from virulence plasmids described in hypervirulent types of Klebsiella pneumoniae with those from conjugative resistance plasmids, was described in an isolate of sequence type (ST) 147 from 2016. Subsequently, this type has been increasingly associated with these plasmids.Hypothesis or gap statement. The extent of carriage of hybrid virulence/resistance plasmids in nosocomial isolates of K. pneumoniae requires further investigation.Aim. To describe the occurrence of virulence/resistance plasmids among isolates of K. pneumoniae received by the UK reference laboratory, particularly among representatives of ST147, and to compare their sequences.Methodology. Isolates received by the laboratory during 2022 and the first half of 2023 (n=1278) were screened for virulence plasmids by PCR detection of rmpA/rmpA2 and typed by variable-number tandem repeat analysis. Twenty-nine representatives of ST147 (including a single-locus variant) from seven hospital laboratories were subjected to long-read nanopore sequencing using high-accuracy q20 chemistry to provide complete assemblies.Results. rmpA/rmpA2 were detected in 110 isolates, of which 59 belonged to hypervirulent K1-ST23, K2-ST86 and K2-ST65/375. Of the remainder, representatives of ST147 formed the largest group, with 22 rmpA/rmpA2-positive representatives (out of 47 isolates). Representatives were from 19 hospital laboratories, with rmpA/rmpA2-positive isolates from 10. Nanopore sequencing of 29 representatives of ST147 divided them into those with no virulence plasmid (n=12), those with non-New Delhi metallo-β-lactamase (NDM) virulence plasmids (n=6) and those carrying bla NDM-5 (n=9) or bla NDM-1 (n=2) virulence plasmids. These plasmids were of IncFIB(pNDM-Mar)/IncHI1B(pNDM-MAR) replicon types. Most of the non-NDM virulence plasmids were highly similar to the originally described KpvST147L_NDM plasmid. Those carrying bla NDM-5 were highly similar to one another and to previously described plasmids in ST383 and carried an extensive array of resistance genes. Comparison of the fully assembled chromosomes indicated multiple introductions of ST147 in UK hospitals.Conclusion. This study highlights the high proportion of representatives of ST147 that carry IncFIB(pNDM-Mar)/IncHI1B(pNDM-MAR) hybrid resistance virulence plasmids. It is important to be aware of the high probability that representatives of this type carry these plasmids combining resistance and virulence determinants and of the consequent increased risk to patients.
Insights
Sequence type 147 Klebsiella pneumoniae frequently carries hybrid resistance-virulence plasmids, increasing patient risk. These plasmids combine antibiotic resistance and virulence factors, necessitating awareness in healthcare settings.
Area of Science:
- Microbiology
- Genetics
- Infectious Diseases
Background:
- The emergence of hybrid resistance/virulence plasmids in Klebsiella pneumoniae, particularly in sequence type (ST) 147, poses a significant threat.
- These plasmids combine traits from hypervirulent and conjugative resistance plasmids, complicating treatment and control of infections.
- The prevalence of these hybrid plasmids in nosocomial Klebsiella pneumoniae isolates requires thorough investigation.
Purpose of the Study:
- To determine the occurrence of virulence/resistance plasmids in Klebsiella pneumoniae isolates from a UK reference laboratory.
- To specifically investigate the presence and characteristics of these plasmids in ST147 isolates.
- To compare the genetic sequences of identified hybrid plasmids.
Main Methods:
- Screening of 1278 Klebsiella pneumoniae isolates (2022-2023) for virulence plasmid markers (rmpA/rmpA2) using PCR.
- Variable-number tandem repeat analysis for isolate typing.
- Long-read nanopore sequencing of 29 ST147 representatives for complete genome and plasmid assembly.
Main Results:
- rmpA/rmpA2 were detected in 110 isolates; 22 of 47 ST147 isolates were positive.
- Nanopore sequencing revealed ST147 isolates harbored no virulence plasmids, non-NDM virulence plasmids, or plasmids with blaNDM-5 or blaNDM-1.
- Hybrid plasmids belonged to IncFIB(pNDM-Mar)/IncHI1B(pNDM-MAR) replicon types, with NDM-carrying plasmids showing extensive resistance genes.
Conclusions:
- A high proportion of ST147 Klebsiella pneumoniae isolates carry IncFIB(pNDM-Mar)/IncHI1B(pNDM-MAR) hybrid resistance-virulence plasmids.
- These hybrid plasmids confer both resistance and virulence, increasing the risk to patients in healthcare settings.
- Awareness of ST147's propensity to carry these plasmids is crucial for infection control and patient management.
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