Cargando…
The resistomes of six carbapenem-resistant pathogens – a critical genotype–phenotype analysis
Carbapenem resistance is a rapidly growing threat to our ability to treat refractory bacterial infections. To understand how carbapenem resistance is mobilized and spread between pathogens, it is important to study the genetic context of the underlying resistance mechanisms. In this study, the resis...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Microbiology Society
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6321870/ https://www.ncbi.nlm.nih.gov/pubmed/30461373 http://dx.doi.org/10.1099/mgen.0.000233 |
_version_ | 1783385529193070592 |
---|---|
author | Johnning, Anna Karami, Nahid Tång Hallbäck, Erika Müller, Vilhelm Nyberg, Lena Buongermino Pereira, Mariana Stewart, Callum Ambjörnsson, Tobias Westerlund, Fredrik Adlerberth, Ingegerd Kristiansson, Erik |
author_facet | Johnning, Anna Karami, Nahid Tång Hallbäck, Erika Müller, Vilhelm Nyberg, Lena Buongermino Pereira, Mariana Stewart, Callum Ambjörnsson, Tobias Westerlund, Fredrik Adlerberth, Ingegerd Kristiansson, Erik |
author_sort | Johnning, Anna |
collection | PubMed |
description | Carbapenem resistance is a rapidly growing threat to our ability to treat refractory bacterial infections. To understand how carbapenem resistance is mobilized and spread between pathogens, it is important to study the genetic context of the underlying resistance mechanisms. In this study, the resistomes of six clinical carbapenem-resistant isolates of five different species – Acinetobacter baumannii, Escherichia coli, two Klebsiella pneumoniae, Proteus mirabilis and Pseudomonas aeruginosa – were characterized using whole genome sequencing. All Enterobacteriaceae isolates and the A. baumannii isolate had acquired a large number of antimicrobial resistance genes (7–18 different genes per isolate), including the following encoding carbapenemases: bla(KPC-2), bla(OXA-48), bla(OXA-72), bla(NDM-1), bla(NDM-7) and bla(VIM-1). In addition, a novel version of bla(SHV) was discovered. Four new resistance plasmids were identified and their fully assembled sequences were verified using optical DNA mapping. Most of the resistance genes were co-localized on these and other plasmids, suggesting a risk for co-selection. In contrast, five out of six carbapenemase genes were present on plasmids with no or few other resistance genes. The expected level of resistance – based on acquired resistance determinants – was concordant with measured levels in most cases. There were, however, several important discrepancies for four of the six isolates concerning multiple classes of antibiotics. In conclusion, our results further elucidate the diversity of carbapenemases, their mechanisms of horizontal transfer and possible patterns of co-selection. The study also emphasizes the difficulty of using whole genome sequencing for antimicrobial susceptibility testing of pathogens with complex genotypes. |
format | Online Article Text |
id | pubmed-6321870 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Microbiology Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-63218702019-02-25 The resistomes of six carbapenem-resistant pathogens – a critical genotype–phenotype analysis Johnning, Anna Karami, Nahid Tång Hallbäck, Erika Müller, Vilhelm Nyberg, Lena Buongermino Pereira, Mariana Stewart, Callum Ambjörnsson, Tobias Westerlund, Fredrik Adlerberth, Ingegerd Kristiansson, Erik Microb Genom Research Article Carbapenem resistance is a rapidly growing threat to our ability to treat refractory bacterial infections. To understand how carbapenem resistance is mobilized and spread between pathogens, it is important to study the genetic context of the underlying resistance mechanisms. In this study, the resistomes of six clinical carbapenem-resistant isolates of five different species – Acinetobacter baumannii, Escherichia coli, two Klebsiella pneumoniae, Proteus mirabilis and Pseudomonas aeruginosa – were characterized using whole genome sequencing. All Enterobacteriaceae isolates and the A. baumannii isolate had acquired a large number of antimicrobial resistance genes (7–18 different genes per isolate), including the following encoding carbapenemases: bla(KPC-2), bla(OXA-48), bla(OXA-72), bla(NDM-1), bla(NDM-7) and bla(VIM-1). In addition, a novel version of bla(SHV) was discovered. Four new resistance plasmids were identified and their fully assembled sequences were verified using optical DNA mapping. Most of the resistance genes were co-localized on these and other plasmids, suggesting a risk for co-selection. In contrast, five out of six carbapenemase genes were present on plasmids with no or few other resistance genes. The expected level of resistance – based on acquired resistance determinants – was concordant with measured levels in most cases. There were, however, several important discrepancies for four of the six isolates concerning multiple classes of antibiotics. In conclusion, our results further elucidate the diversity of carbapenemases, their mechanisms of horizontal transfer and possible patterns of co-selection. The study also emphasizes the difficulty of using whole genome sequencing for antimicrobial susceptibility testing of pathogens with complex genotypes. Microbiology Society 2018-11-21 /pmc/articles/PMC6321870/ /pubmed/30461373 http://dx.doi.org/10.1099/mgen.0.000233 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Article Johnning, Anna Karami, Nahid Tång Hallbäck, Erika Müller, Vilhelm Nyberg, Lena Buongermino Pereira, Mariana Stewart, Callum Ambjörnsson, Tobias Westerlund, Fredrik Adlerberth, Ingegerd Kristiansson, Erik The resistomes of six carbapenem-resistant pathogens – a critical genotype–phenotype analysis |
title | The resistomes of six carbapenem-resistant pathogens – a critical genotype–phenotype analysis |
title_full | The resistomes of six carbapenem-resistant pathogens – a critical genotype–phenotype analysis |
title_fullStr | The resistomes of six carbapenem-resistant pathogens – a critical genotype–phenotype analysis |
title_full_unstemmed | The resistomes of six carbapenem-resistant pathogens – a critical genotype–phenotype analysis |
title_short | The resistomes of six carbapenem-resistant pathogens – a critical genotype–phenotype analysis |
title_sort | resistomes of six carbapenem-resistant pathogens – a critical genotype–phenotype analysis |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6321870/ https://www.ncbi.nlm.nih.gov/pubmed/30461373 http://dx.doi.org/10.1099/mgen.0.000233 |
work_keys_str_mv | AT johnninganna theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT karaminahid theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT tanghallbackerika theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT mullervilhelm theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT nyberglena theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT buongerminopereiramariana theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT stewartcallum theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT ambjornssontobias theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT westerlundfredrik theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT adlerberthingegerd theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT kristianssonerik theresistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT johnninganna resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT karaminahid resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT tanghallbackerika resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT mullervilhelm resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT nyberglena resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT buongerminopereiramariana resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT stewartcallum resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT ambjornssontobias resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT westerlundfredrik resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT adlerberthingegerd resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis AT kristianssonerik resistomesofsixcarbapenemresistantpathogensacriticalgenotypephenotypeanalysis |