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Evolution and Global Transmission of a Multidrug-Resistant, Community-Associated Methicillin-Resistant Staphylococcus aureus Lineage from the Indian Subcontinent

The evolution and global transmission of antimicrobial resistance have been well documented for Gram-negative bacteria and health care-associated epidemic pathogens, often emerging from regions with heavy antimicrobial use. However, the degree to which similar processes occur with Gram-positive bact...

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Autores principales: Steinig, Eike J., Duchene, Sebastian, Robinson, D. Ashley, Monecke, Stefan, Yokoyama, Maho, Laabei, Maisem, Slickers, Peter, Andersson, Patiyan, Williamson, Deborah, Kearns, Angela, Goering, Richard V., Dickson, Elizabeth, Ehricht, Ralf, Ip, Margaret, O’Sullivan, Matthew V. N., Coombs, Geoffrey W., Petersen, Andreas, Brennan, Grainne, Shore, Anna C., Coleman, David C., Pantosti, Annalisa, de Lencastre, Herminia, Westh, Henrik, Kobayashi, Nobumichi, Heffernan, Helen, Strommenger, Birgit, Layer, Franziska, Weber, Stefan, Aamot, Hege Vangstein, Skakni, Leila, Peacock, Sharon J., Sarovich, Derek, Harris, Simon, Parkhill, Julian, Massey, Ruth C., Holden, Mathew T. G., Bentley, Stephen D., Tong, Steven Y. C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6879714/
https://www.ncbi.nlm.nih.gov/pubmed/31772058
http://dx.doi.org/10.1128/mBio.01105-19
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author Steinig, Eike J.
Duchene, Sebastian
Robinson, D. Ashley
Monecke, Stefan
Yokoyama, Maho
Laabei, Maisem
Slickers, Peter
Andersson, Patiyan
Williamson, Deborah
Kearns, Angela
Goering, Richard V.
Dickson, Elizabeth
Ehricht, Ralf
Ip, Margaret
O’Sullivan, Matthew V. N.
Coombs, Geoffrey W.
Petersen, Andreas
Brennan, Grainne
Shore, Anna C.
Coleman, David C.
Pantosti, Annalisa
de Lencastre, Herminia
Westh, Henrik
Kobayashi, Nobumichi
Heffernan, Helen
Strommenger, Birgit
Layer, Franziska
Weber, Stefan
Aamot, Hege Vangstein
Skakni, Leila
Peacock, Sharon J.
Sarovich, Derek
Harris, Simon
Parkhill, Julian
Massey, Ruth C.
Holden, Mathew T. G.
Bentley, Stephen D.
Tong, Steven Y. C.
author_facet Steinig, Eike J.
Duchene, Sebastian
Robinson, D. Ashley
Monecke, Stefan
Yokoyama, Maho
Laabei, Maisem
Slickers, Peter
Andersson, Patiyan
Williamson, Deborah
Kearns, Angela
Goering, Richard V.
Dickson, Elizabeth
Ehricht, Ralf
Ip, Margaret
O’Sullivan, Matthew V. N.
Coombs, Geoffrey W.
Petersen, Andreas
Brennan, Grainne
Shore, Anna C.
Coleman, David C.
Pantosti, Annalisa
de Lencastre, Herminia
Westh, Henrik
Kobayashi, Nobumichi
Heffernan, Helen
Strommenger, Birgit
Layer, Franziska
Weber, Stefan
Aamot, Hege Vangstein
Skakni, Leila
Peacock, Sharon J.
Sarovich, Derek
Harris, Simon
Parkhill, Julian
Massey, Ruth C.
Holden, Mathew T. G.
Bentley, Stephen D.
Tong, Steven Y. C.
author_sort Steinig, Eike J.
collection PubMed
description The evolution and global transmission of antimicrobial resistance have been well documented for Gram-negative bacteria and health care-associated epidemic pathogens, often emerging from regions with heavy antimicrobial use. However, the degree to which similar processes occur with Gram-positive bacteria in the community setting is less well understood. In this study, we traced the recent origins and global spread of a multidrug-resistant, community-associated Staphylococcus aureus lineage from the Indian subcontinent, the Bengal Bay clone (ST772). We generated whole-genome sequence data of 340 isolates from 14 countries, including the first isolates from Bangladesh and India, to reconstruct the evolutionary history and genomic epidemiology of the lineage. Our data show that the clone emerged on the Indian subcontinent in the early 1960s and disseminated rapidly in the 1990s. Short-term outbreaks in community and health care settings occurred following intercontinental transmission, typically associated with travel and family contacts on the subcontinent, but ongoing endemic transmission was uncommon. Acquisition of a multidrug resistance integrated plasmid was instrumental in the emergence of a single dominant and globally disseminated clade in the early 1990s. Phenotypic data on biofilm, growth, and toxicity point to antimicrobial resistance as the driving force in the evolution of ST772. The Bengal Bay clone therefore combines the multidrug resistance of traditional health care-associated clones with the epidemiological transmission of community-associated methicillin-resistant S. aureus (MRSA). Our study demonstrates the importance of whole-genome sequencing for tracking the evolution of emerging and resistant pathogens. It provides a critical framework for ongoing surveillance of the clone on the Indian subcontinent and elsewhere.
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spelling pubmed-68797142019-12-03 Evolution and Global Transmission of a Multidrug-Resistant, Community-Associated Methicillin-Resistant Staphylococcus aureus Lineage from the Indian Subcontinent Steinig, Eike J. Duchene, Sebastian Robinson, D. Ashley Monecke, Stefan Yokoyama, Maho Laabei, Maisem Slickers, Peter Andersson, Patiyan Williamson, Deborah Kearns, Angela Goering, Richard V. Dickson, Elizabeth Ehricht, Ralf Ip, Margaret O’Sullivan, Matthew V. N. Coombs, Geoffrey W. Petersen, Andreas Brennan, Grainne Shore, Anna C. Coleman, David C. Pantosti, Annalisa de Lencastre, Herminia Westh, Henrik Kobayashi, Nobumichi Heffernan, Helen Strommenger, Birgit Layer, Franziska Weber, Stefan Aamot, Hege Vangstein Skakni, Leila Peacock, Sharon J. Sarovich, Derek Harris, Simon Parkhill, Julian Massey, Ruth C. Holden, Mathew T. G. Bentley, Stephen D. Tong, Steven Y. C. mBio Research Article The evolution and global transmission of antimicrobial resistance have been well documented for Gram-negative bacteria and health care-associated epidemic pathogens, often emerging from regions with heavy antimicrobial use. However, the degree to which similar processes occur with Gram-positive bacteria in the community setting is less well understood. In this study, we traced the recent origins and global spread of a multidrug-resistant, community-associated Staphylococcus aureus lineage from the Indian subcontinent, the Bengal Bay clone (ST772). We generated whole-genome sequence data of 340 isolates from 14 countries, including the first isolates from Bangladesh and India, to reconstruct the evolutionary history and genomic epidemiology of the lineage. Our data show that the clone emerged on the Indian subcontinent in the early 1960s and disseminated rapidly in the 1990s. Short-term outbreaks in community and health care settings occurred following intercontinental transmission, typically associated with travel and family contacts on the subcontinent, but ongoing endemic transmission was uncommon. Acquisition of a multidrug resistance integrated plasmid was instrumental in the emergence of a single dominant and globally disseminated clade in the early 1990s. Phenotypic data on biofilm, growth, and toxicity point to antimicrobial resistance as the driving force in the evolution of ST772. The Bengal Bay clone therefore combines the multidrug resistance of traditional health care-associated clones with the epidemiological transmission of community-associated methicillin-resistant S. aureus (MRSA). Our study demonstrates the importance of whole-genome sequencing for tracking the evolution of emerging and resistant pathogens. It provides a critical framework for ongoing surveillance of the clone on the Indian subcontinent and elsewhere. American Society for Microbiology 2019-11-26 /pmc/articles/PMC6879714/ /pubmed/31772058 http://dx.doi.org/10.1128/mBio.01105-19 Text en Copyright © 2019 Steinig et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Steinig, Eike J.
Duchene, Sebastian
Robinson, D. Ashley
Monecke, Stefan
Yokoyama, Maho
Laabei, Maisem
Slickers, Peter
Andersson, Patiyan
Williamson, Deborah
Kearns, Angela
Goering, Richard V.
Dickson, Elizabeth
Ehricht, Ralf
Ip, Margaret
O’Sullivan, Matthew V. N.
Coombs, Geoffrey W.
Petersen, Andreas
Brennan, Grainne
Shore, Anna C.
Coleman, David C.
Pantosti, Annalisa
de Lencastre, Herminia
Westh, Henrik
Kobayashi, Nobumichi
Heffernan, Helen
Strommenger, Birgit
Layer, Franziska
Weber, Stefan
Aamot, Hege Vangstein
Skakni, Leila
Peacock, Sharon J.
Sarovich, Derek
Harris, Simon
Parkhill, Julian
Massey, Ruth C.
Holden, Mathew T. G.
Bentley, Stephen D.
Tong, Steven Y. C.
Evolution and Global Transmission of a Multidrug-Resistant, Community-Associated Methicillin-Resistant Staphylococcus aureus Lineage from the Indian Subcontinent
title Evolution and Global Transmission of a Multidrug-Resistant, Community-Associated Methicillin-Resistant Staphylococcus aureus Lineage from the Indian Subcontinent
title_full Evolution and Global Transmission of a Multidrug-Resistant, Community-Associated Methicillin-Resistant Staphylococcus aureus Lineage from the Indian Subcontinent
title_fullStr Evolution and Global Transmission of a Multidrug-Resistant, Community-Associated Methicillin-Resistant Staphylococcus aureus Lineage from the Indian Subcontinent
title_full_unstemmed Evolution and Global Transmission of a Multidrug-Resistant, Community-Associated Methicillin-Resistant Staphylococcus aureus Lineage from the Indian Subcontinent
title_short Evolution and Global Transmission of a Multidrug-Resistant, Community-Associated Methicillin-Resistant Staphylococcus aureus Lineage from the Indian Subcontinent
title_sort evolution and global transmission of a multidrug-resistant, community-associated methicillin-resistant staphylococcus aureus lineage from the indian subcontinent
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6879714/
https://www.ncbi.nlm.nih.gov/pubmed/31772058
http://dx.doi.org/10.1128/mBio.01105-19
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