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Emergence of Multidrug Resistant Hypervirulent ST23 Klebsiella pneumoniae: Multidrug Resistant Plasmid Acquisition Drives Evolution

BACKGROUND: In recent years, the emergence of multidrug resistant hypervirulent K. pneumoniae (MDR hvKp) isolates poses severe therapeutic challenge to global public health. The present study used the complete genome sequence of two MDR hvKp isolates belonging to ST23 to characterize the phylogeneti...

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Autores principales: Shankar, Chaitra, Jacob, Jobin John, Vasudevan, Karthick, Biswas, Rohit, Manesh, Abi, Sethuvel, Dhiviya Prabaa Muthuirulandi, Varughese, Santosh, Biswas, Indranil, Veeraraghavan, Balaji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7718023/
https://www.ncbi.nlm.nih.gov/pubmed/33330125
http://dx.doi.org/10.3389/fcimb.2020.575289
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author Shankar, Chaitra
Jacob, Jobin John
Vasudevan, Karthick
Biswas, Rohit
Manesh, Abi
Sethuvel, Dhiviya Prabaa Muthuirulandi
Varughese, Santosh
Biswas, Indranil
Veeraraghavan, Balaji
author_facet Shankar, Chaitra
Jacob, Jobin John
Vasudevan, Karthick
Biswas, Rohit
Manesh, Abi
Sethuvel, Dhiviya Prabaa Muthuirulandi
Varughese, Santosh
Biswas, Indranil
Veeraraghavan, Balaji
author_sort Shankar, Chaitra
collection PubMed
description BACKGROUND: In recent years, the emergence of multidrug resistant hypervirulent K. pneumoniae (MDR hvKp) isolates poses severe therapeutic challenge to global public health. The present study used the complete genome sequence of two MDR hvKp isolates belonging to ST23 to characterize the phylogenetic background and plasmid diversity. METHODS: Two hvKp isolates from patients with bacteremia were sequenced using Ion Torrent PGM and Oxford Nanopore MinION platforms and assembled by hybrid genome assembly approach. Comparative genomics approaches were used to investigate the population structure, evolution, virulence, and antimicrobial resistance of MDR hvKp strains. RESULTS: The study isolates exhibited typical features of hvKp phenotypes associated with ST23. The convergence of multidrug resistance and hypervirulence were attributed by the presence of multiple plasmids including a 216 kb virulence plasmid and MDR plasmids belonging to IncA/C(2), IncFIB, IncX3, and ColKP3 groups. The insertion of catA1 gene into virulence plasmid was observed along with genetic factors such as aerobactin, salmochelin, and rmpA2 that confer hvKp’s hypervirulent phenotype. The core genome single nucleotide polymorphism (SNP) phylogenetic analyses of the isolates showed the evolution of ST23 hvKp was predominantly driven by ICEKp acquisitions. CONCLUSION: To the best of our knowledge, this is the first report of MDR hvKp isolates of ST23 with insertion of catA1 gene into the virulence plasmid which presents the possibility of hotspot integration sites on the plasmids to aid acquisition of AMR genes. ST23 is no longer confined to susceptible strains of hvKp. Our findings emphasize the need for more studies on recombinant events, plasmid transmission dynamics and evolutionary process involving hvKp.
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spelling pubmed-77180232020-12-15 Emergence of Multidrug Resistant Hypervirulent ST23 Klebsiella pneumoniae: Multidrug Resistant Plasmid Acquisition Drives Evolution Shankar, Chaitra Jacob, Jobin John Vasudevan, Karthick Biswas, Rohit Manesh, Abi Sethuvel, Dhiviya Prabaa Muthuirulandi Varughese, Santosh Biswas, Indranil Veeraraghavan, Balaji Front Cell Infect Microbiol Cellular and Infection Microbiology BACKGROUND: In recent years, the emergence of multidrug resistant hypervirulent K. pneumoniae (MDR hvKp) isolates poses severe therapeutic challenge to global public health. The present study used the complete genome sequence of two MDR hvKp isolates belonging to ST23 to characterize the phylogenetic background and plasmid diversity. METHODS: Two hvKp isolates from patients with bacteremia were sequenced using Ion Torrent PGM and Oxford Nanopore MinION platforms and assembled by hybrid genome assembly approach. Comparative genomics approaches were used to investigate the population structure, evolution, virulence, and antimicrobial resistance of MDR hvKp strains. RESULTS: The study isolates exhibited typical features of hvKp phenotypes associated with ST23. The convergence of multidrug resistance and hypervirulence were attributed by the presence of multiple plasmids including a 216 kb virulence plasmid and MDR plasmids belonging to IncA/C(2), IncFIB, IncX3, and ColKP3 groups. The insertion of catA1 gene into virulence plasmid was observed along with genetic factors such as aerobactin, salmochelin, and rmpA2 that confer hvKp’s hypervirulent phenotype. The core genome single nucleotide polymorphism (SNP) phylogenetic analyses of the isolates showed the evolution of ST23 hvKp was predominantly driven by ICEKp acquisitions. CONCLUSION: To the best of our knowledge, this is the first report of MDR hvKp isolates of ST23 with insertion of catA1 gene into the virulence plasmid which presents the possibility of hotspot integration sites on the plasmids to aid acquisition of AMR genes. ST23 is no longer confined to susceptible strains of hvKp. Our findings emphasize the need for more studies on recombinant events, plasmid transmission dynamics and evolutionary process involving hvKp. Frontiers Media S.A. 2020-11-20 /pmc/articles/PMC7718023/ /pubmed/33330125 http://dx.doi.org/10.3389/fcimb.2020.575289 Text en Copyright © 2020 Shankar, Jacob, Vasudevan, Biswas, Manesh, Sethuvel, Varughese, Biswas and Veeraraghavan http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular and Infection Microbiology
Shankar, Chaitra
Jacob, Jobin John
Vasudevan, Karthick
Biswas, Rohit
Manesh, Abi
Sethuvel, Dhiviya Prabaa Muthuirulandi
Varughese, Santosh
Biswas, Indranil
Veeraraghavan, Balaji
Emergence of Multidrug Resistant Hypervirulent ST23 Klebsiella pneumoniae: Multidrug Resistant Plasmid Acquisition Drives Evolution
title Emergence of Multidrug Resistant Hypervirulent ST23 Klebsiella pneumoniae: Multidrug Resistant Plasmid Acquisition Drives Evolution
title_full Emergence of Multidrug Resistant Hypervirulent ST23 Klebsiella pneumoniae: Multidrug Resistant Plasmid Acquisition Drives Evolution
title_fullStr Emergence of Multidrug Resistant Hypervirulent ST23 Klebsiella pneumoniae: Multidrug Resistant Plasmid Acquisition Drives Evolution
title_full_unstemmed Emergence of Multidrug Resistant Hypervirulent ST23 Klebsiella pneumoniae: Multidrug Resistant Plasmid Acquisition Drives Evolution
title_short Emergence of Multidrug Resistant Hypervirulent ST23 Klebsiella pneumoniae: Multidrug Resistant Plasmid Acquisition Drives Evolution
title_sort emergence of multidrug resistant hypervirulent st23 klebsiella pneumoniae: multidrug resistant plasmid acquisition drives evolution
topic Cellular and Infection Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7718023/
https://www.ncbi.nlm.nih.gov/pubmed/33330125
http://dx.doi.org/10.3389/fcimb.2020.575289
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