Phylogeographical analysis of the dominant multidrug-resistant H58 clade of Salmonella Typhi identifies inter- and intracontinental transmission events

Vanessa Wong and colleagues report whole-genome sequencing of 1,832 Salmonella enterica serovar Typhi isolates from 63 endemic countries. They identify mutations that define the multidrug resistant (MDR) H58 lineage and report numerous inter- and intracontinental transmissions of this lineage as wel...

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Veröffentlicht in:Nature genetics 2015-06, Vol.47 (6), p.632-639
Hauptverfasser: Wong, Vanessa K, Baker, Stephen, Pickard, Derek J, Parkhill, Julian, Page, Andrew J, Feasey, Nicholas A, Kingsley, Robert A, Thomson, Nicholas R, Keane, Jacqueline A, Weill, François-Xavier, Edwards, David J, Hawkey, Jane, Harris, Simon R, Mather, Alison E, Cain, Amy K, Hadfield, James, Hart, Peter J, Thieu, Nga Tran Vu, Klemm, Elizabeth J, Glinos, Dafni A, Breiman, Robert F, Watson, Conall H, Kariuki, Samuel, Gordon, Melita A, Heyderman, Robert S, Okoro, Chinyere, Jacobs, Jan, Lunguya, Octavie, Edmunds, W John, Msefula, Chisomo, Chabalgoity, Jose A, Kama, Mike, Jenkins, Kylie, Dutta, Shanta, Marks, Florian, Campos, Josefina, Thompson, Corinne, Obaro, Stephen, MacLennan, Calman A, Dolecek, Christiane, Keddy, Karen H, Smith, Anthony M, Parry, Christopher M, Karkey, Abhilasha, Mulholland, E Kim, Campbell, James I, Dongol, Sabina, Basnyat, Buddha, Dufour, Muriel, Bandaranayake, Don, Naseri, Take Toleafoa, Singh, Shalini Pravin, Hatta, Mochammad, Newton, Paul, Onsare, Robert S, Isaia, Lupeoletalalei, Dance, David, Davong, Viengmon, Thwaites, Guy, Wijedoru, Lalith, Crump, John A, De Pinna, Elizabeth, Nair, Satheesh, Nilles, Eric J, Thanh, Duy Pham, Turner, Paul, Soeng, Sona, Valcanis, Mary, Powling, Joan, Dimovski, Karolina, Hogg, Geoff, Farrar, Jeremy, Holt, Kathryn E, Dougan, Gordon
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container_issue 6
container_start_page 632
container_title Nature genetics
container_volume 47
creator Wong, Vanessa K
Baker, Stephen
Pickard, Derek J
Parkhill, Julian
Page, Andrew J
Feasey, Nicholas A
Kingsley, Robert A
Thomson, Nicholas R
Keane, Jacqueline A
Weill, François-Xavier
Edwards, David J
Hawkey, Jane
Harris, Simon R
Mather, Alison E
Cain, Amy K
Hadfield, James
Hart, Peter J
Thieu, Nga Tran Vu
Klemm, Elizabeth J
Glinos, Dafni A
Breiman, Robert F
Watson, Conall H
Kariuki, Samuel
Gordon, Melita A
Heyderman, Robert S
Okoro, Chinyere
Jacobs, Jan
Lunguya, Octavie
Edmunds, W John
Msefula, Chisomo
Chabalgoity, Jose A
Kama, Mike
Jenkins, Kylie
Dutta, Shanta
Marks, Florian
Campos, Josefina
Thompson, Corinne
Obaro, Stephen
MacLennan, Calman A
Dolecek, Christiane
Keddy, Karen H
Smith, Anthony M
Parry, Christopher M
Karkey, Abhilasha
Mulholland, E Kim
Campbell, James I
Dongol, Sabina
Basnyat, Buddha
Dufour, Muriel
Bandaranayake, Don
Naseri, Take Toleafoa
Singh, Shalini Pravin
Hatta, Mochammad
Newton, Paul
Onsare, Robert S
Isaia, Lupeoletalalei
Dance, David
Davong, Viengmon
Thwaites, Guy
Wijedoru, Lalith
Crump, John A
De Pinna, Elizabeth
Nair, Satheesh
Nilles, Eric J
Thanh, Duy Pham
Turner, Paul
Soeng, Sona
Valcanis, Mary
Powling, Joan
Dimovski, Karolina
Hogg, Geoff
Farrar, Jeremy
Holt, Kathryn E
Dougan, Gordon
description Vanessa Wong and colleagues report whole-genome sequencing of 1,832 Salmonella enterica serovar Typhi isolates from 63 endemic countries. They identify mutations that define the multidrug resistant (MDR) H58 lineage and report numerous inter- and intracontinental transmissions of this lineage as well as an ongoing MDR typhoid epidemic in Africa. The emergence of multidrug-resistant (MDR) typhoid is a major global health threat affecting many countries where the disease is endemic. Here whole-genome sequence analysis of 1,832 Salmonella enterica serovar Typhi ( S. Typhi) identifies a single dominant MDR lineage, H58, that has emerged and spread throughout Asia and Africa over the last 30 years. Our analysis identifies numerous transmissions of H58, including multiple transfers from Asia to Africa and an ongoing, unrecognized MDR epidemic within Africa itself. Notably, our analysis indicates that H58 lineages are displacing antibiotic-sensitive isolates, transforming the global population structure of this pathogen. H58 isolates can harbor a complex MDR element residing either on transmissible IncHI1 plasmids or within multiple chromosomal integration sites. We also identify new mutations that define the H58 lineage. This phylogeographical analysis provides a framework to facilitate global management of MDR typhoid and is applicable to similar MDR lineages emerging in other bacterial species.
doi_str_mv 10.1038/ng.3281
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They identify mutations that define the multidrug resistant (MDR) H58 lineage and report numerous inter- and intracontinental transmissions of this lineage as well as an ongoing MDR typhoid epidemic in Africa. The emergence of multidrug-resistant (MDR) typhoid is a major global health threat affecting many countries where the disease is endemic. Here whole-genome sequence analysis of 1,832 Salmonella enterica serovar Typhi ( S. Typhi) identifies a single dominant MDR lineage, H58, that has emerged and spread throughout Asia and Africa over the last 30 years. Our analysis identifies numerous transmissions of H58, including multiple transfers from Asia to Africa and an ongoing, unrecognized MDR epidemic within Africa itself. Notably, our analysis indicates that H58 lineages are displacing antibiotic-sensitive isolates, transforming the global population structure of this pathogen. H58 isolates can harbor a complex MDR element residing either on transmissible IncHI1 plasmids or within multiple chromosomal integration sites. We also identify new mutations that define the H58 lineage. This phylogeographical analysis provides a framework to facilitate global management of MDR typhoid and is applicable to similar MDR lineages emerging in other bacterial species.</description><identifier>ISSN: 1061-4036</identifier><identifier>EISSN: 1546-1718</identifier><identifier>DOI: 10.1038/ng.3281</identifier><identifier>PMID: 25961941</identifier><language>eng</language><publisher>New York: Nature Publishing Group US</publisher><subject>45/23 ; 631/326/1320 ; Acquisitions &amp; mergers ; Agriculture ; Analysis ; Animal Genetics and Genomics ; Anti-Bacterial Agents - pharmacology ; Anti-Bacterial Agents - therapeutic use ; Antibiotics ; Australia ; Bacterial genetics ; Bacteriology ; Biomedicine ; Cancer Research ; Councils ; Data collection ; Diseases ; DNA sequencing ; Drug resistance ; Drug resistance in microorganisms ; Drug Resistance, Multiple, Bacterial ; Epidemics ; Fiji ; Gene Function ; Genetic aspects ; Genome, Bacterial ; Genomes ; Genomics ; Global health ; Haplotypes ; Health ; Health aspects ; Health risks ; Human Genetics ; Humans ; Identification and classification ; India ; Infectious diseases ; Kenya ; Life Sciences ; Malawi ; Medical research ; Medical schools ; Microbial drug resistance ; Microbiology and Parasitology ; Molecular Sequence Data ; Mutation ; Phylogenetics ; Phylogeny ; Phylogeography ; Plasmids ; Population ; Population structure ; Quinolines - pharmacology ; Quinolines - therapeutic use ; Salmonella ; Salmonella typhi - genetics ; Salmonella typhosa ; Sequence Analysis, DNA ; South Africa ; Southeast Asia ; Typhoid ; Typhoid fever ; Typhoid Fever - drug therapy ; Typhoid Fever - microbiology ; Typhoid Fever - transmission ; United Kingdom ; Vietnam ; Virulence (Microbiology) ; World health</subject><ispartof>Nature genetics, 2015-06, Vol.47 (6), p.632-639</ispartof><rights>Springer Nature America, Inc. 2015</rights><rights>COPYRIGHT 2015 Nature Publishing Group</rights><rights>Copyright Nature Publishing Group Jun 2015</rights><rights>Attribution - NonCommercial</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c807t-875d689aea6f799cbb10aeb4c3d373cc730a1967c182de0838c045e2bd1392b63</citedby><cites>FETCH-LOGICAL-c807t-875d689aea6f799cbb10aeb4c3d373cc730a1967c182de0838c045e2bd1392b63</cites><orcidid>0000-0003-1512-6194 ; 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They identify mutations that define the multidrug resistant (MDR) H58 lineage and report numerous inter- and intracontinental transmissions of this lineage as well as an ongoing MDR typhoid epidemic in Africa. The emergence of multidrug-resistant (MDR) typhoid is a major global health threat affecting many countries where the disease is endemic. Here whole-genome sequence analysis of 1,832 Salmonella enterica serovar Typhi ( S. Typhi) identifies a single dominant MDR lineage, H58, that has emerged and spread throughout Asia and Africa over the last 30 years. Our analysis identifies numerous transmissions of H58, including multiple transfers from Asia to Africa and an ongoing, unrecognized MDR epidemic within Africa itself. Notably, our analysis indicates that H58 lineages are displacing antibiotic-sensitive isolates, transforming the global population structure of this pathogen. H58 isolates can harbor a complex MDR element residing either on transmissible IncHI1 plasmids or within multiple chromosomal integration sites. We also identify new mutations that define the H58 lineage. This phylogeographical analysis provides a framework to facilitate global management of MDR typhoid and is applicable to similar MDR lineages emerging in other bacterial species.</description><subject>45/23</subject><subject>631/326/1320</subject><subject>Acquisitions &amp; mergers</subject><subject>Agriculture</subject><subject>Analysis</subject><subject>Animal Genetics and Genomics</subject><subject>Anti-Bacterial Agents - pharmacology</subject><subject>Anti-Bacterial Agents - therapeutic use</subject><subject>Antibiotics</subject><subject>Australia</subject><subject>Bacterial genetics</subject><subject>Bacteriology</subject><subject>Biomedicine</subject><subject>Cancer Research</subject><subject>Councils</subject><subject>Data collection</subject><subject>Diseases</subject><subject>DNA sequencing</subject><subject>Drug resistance</subject><subject>Drug resistance in microorganisms</subject><subject>Drug Resistance, Multiple, Bacterial</subject><subject>Epidemics</subject><subject>Fiji</subject><subject>Gene Function</subject><subject>Genetic aspects</subject><subject>Genome, Bacterial</subject><subject>Genomes</subject><subject>Genomics</subject><subject>Global health</subject><subject>Haplotypes</subject><subject>Health</subject><subject>Health aspects</subject><subject>Health risks</subject><subject>Human Genetics</subject><subject>Humans</subject><subject>Identification and classification</subject><subject>India</subject><subject>Infectious diseases</subject><subject>Kenya</subject><subject>Life Sciences</subject><subject>Malawi</subject><subject>Medical research</subject><subject>Medical schools</subject><subject>Microbial drug resistance</subject><subject>Microbiology and Parasitology</subject><subject>Molecular Sequence Data</subject><subject>Mutation</subject><subject>Phylogenetics</subject><subject>Phylogeny</subject><subject>Phylogeography</subject><subject>Plasmids</subject><subject>Population</subject><subject>Population structure</subject><subject>Quinolines - pharmacology</subject><subject>Quinolines - therapeutic use</subject><subject>Salmonella</subject><subject>Salmonella typhi - genetics</subject><subject>Salmonella typhosa</subject><subject>Sequence Analysis, DNA</subject><subject>South Africa</subject><subject>Southeast Asia</subject><subject>Typhoid</subject><subject>Typhoid fever</subject><subject>Typhoid Fever - drug therapy</subject><subject>Typhoid Fever - microbiology</subject><subject>Typhoid Fever - transmission</subject><subject>United Kingdom</subject><subject>Vietnam</subject><subject>Virulence (Microbiology)</subject><subject>World 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analysis of the dominant multidrug-resistant H58 clade of Salmonella Typhi identifies inter- and intracontinental transmission events</title><author>Wong, Vanessa K ; Baker, Stephen ; Pickard, Derek J ; Parkhill, Julian ; Page, Andrew J ; Feasey, Nicholas A ; Kingsley, Robert A ; Thomson, Nicholas R ; Keane, Jacqueline A ; Weill, François-Xavier ; Edwards, David J ; Hawkey, Jane ; Harris, Simon R ; Mather, Alison E ; Cain, Amy K ; Hadfield, James ; Hart, Peter J ; Thieu, Nga Tran Vu ; Klemm, Elizabeth J ; Glinos, Dafni A ; Breiman, Robert F ; Watson, Conall H ; Kariuki, Samuel ; Gordon, Melita A ; Heyderman, Robert S ; Okoro, Chinyere ; Jacobs, Jan ; Lunguya, Octavie ; Edmunds, W John ; Msefula, Chisomo ; Chabalgoity, Jose A ; Kama, Mike ; Jenkins, Kylie ; Dutta, Shanta ; Marks, Florian ; Campos, Josefina ; Thompson, Corinne ; Obaro, Stephen ; MacLennan, Calman A ; Dolecek, Christiane ; Keddy, Karen H ; Smith, Anthony M ; Parry, Christopher M ; Karkey, Abhilasha ; Mulholland, E Kim ; Campbell, James I ; Dongol, Sabina ; Basnyat, Buddha ; Dufour, Muriel ; Bandaranayake, Don ; Naseri, Take Toleafoa ; Singh, Shalini Pravin ; Hatta, Mochammad ; Newton, Paul ; Onsare, Robert S ; Isaia, Lupeoletalalei ; Dance, David ; Davong, Viengmon ; Thwaites, Guy ; Wijedoru, Lalith ; Crump, John A ; De Pinna, Elizabeth ; Nair, Satheesh ; Nilles, Eric J ; Thanh, Duy Pham ; Turner, Paul ; Soeng, Sona ; Valcanis, Mary ; Powling, Joan ; Dimovski, Karolina ; Hogg, Geoff ; Farrar, Jeremy ; Holt, Kathryn E ; Dougan, Gordon</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c807t-875d689aea6f799cbb10aeb4c3d373cc730a1967c182de0838c045e2bd1392b63</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2015</creationdate><topic>45/23</topic><topic>631/326/1320</topic><topic>Acquisitions &amp; mergers</topic><topic>Agriculture</topic><topic>Analysis</topic><topic>Animal Genetics and Genomics</topic><topic>Anti-Bacterial Agents - pharmacology</topic><topic>Anti-Bacterial Agents - therapeutic use</topic><topic>Antibiotics</topic><topic>Australia</topic><topic>Bacterial genetics</topic><topic>Bacteriology</topic><topic>Biomedicine</topic><topic>Cancer Research</topic><topic>Councils</topic><topic>Data collection</topic><topic>Diseases</topic><topic>DNA sequencing</topic><topic>Drug resistance</topic><topic>Drug resistance in microorganisms</topic><topic>Drug Resistance, Multiple, Bacterial</topic><topic>Epidemics</topic><topic>Fiji</topic><topic>Gene Function</topic><topic>Genetic aspects</topic><topic>Genome, Bacterial</topic><topic>Genomes</topic><topic>Genomics</topic><topic>Global health</topic><topic>Haplotypes</topic><topic>Health</topic><topic>Health aspects</topic><topic>Health risks</topic><topic>Human Genetics</topic><topic>Humans</topic><topic>Identification and classification</topic><topic>India</topic><topic>Infectious 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K</au><au>Hadfield, James</au><au>Hart, Peter J</au><au>Thieu, Nga Tran Vu</au><au>Klemm, Elizabeth J</au><au>Glinos, Dafni A</au><au>Breiman, Robert F</au><au>Watson, Conall H</au><au>Kariuki, Samuel</au><au>Gordon, Melita A</au><au>Heyderman, Robert S</au><au>Okoro, Chinyere</au><au>Jacobs, Jan</au><au>Lunguya, Octavie</au><au>Edmunds, W John</au><au>Msefula, Chisomo</au><au>Chabalgoity, Jose A</au><au>Kama, Mike</au><au>Jenkins, Kylie</au><au>Dutta, Shanta</au><au>Marks, Florian</au><au>Campos, Josefina</au><au>Thompson, Corinne</au><au>Obaro, Stephen</au><au>MacLennan, Calman A</au><au>Dolecek, Christiane</au><au>Keddy, Karen H</au><au>Smith, Anthony M</au><au>Parry, Christopher M</au><au>Karkey, Abhilasha</au><au>Mulholland, E Kim</au><au>Campbell, James I</au><au>Dongol, Sabina</au><au>Basnyat, Buddha</au><au>Dufour, Muriel</au><au>Bandaranayake, Don</au><au>Naseri, Take Toleafoa</au><au>Singh, Shalini Pravin</au><au>Hatta, Mochammad</au><au>Newton, Paul</au><au>Onsare, Robert S</au><au>Isaia, Lupeoletalalei</au><au>Dance, David</au><au>Davong, Viengmon</au><au>Thwaites, Guy</au><au>Wijedoru, Lalith</au><au>Crump, John A</au><au>De Pinna, Elizabeth</au><au>Nair, Satheesh</au><au>Nilles, Eric J</au><au>Thanh, Duy Pham</au><au>Turner, Paul</au><au>Soeng, Sona</au><au>Valcanis, Mary</au><au>Powling, Joan</au><au>Dimovski, Karolina</au><au>Hogg, Geoff</au><au>Farrar, Jeremy</au><au>Holt, Kathryn E</au><au>Dougan, Gordon</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Phylogeographical analysis of the dominant multidrug-resistant H58 clade of Salmonella Typhi identifies inter- and intracontinental transmission events</atitle><jtitle>Nature genetics</jtitle><stitle>Nat Genet</stitle><addtitle>Nat Genet</addtitle><date>2015-06-01</date><risdate>2015</risdate><volume>47</volume><issue>6</issue><spage>632</spage><epage>639</epage><pages>632-639</pages><issn>1061-4036</issn><eissn>1546-1718</eissn><abstract>Vanessa Wong and colleagues report whole-genome sequencing of 1,832 Salmonella enterica serovar Typhi isolates from 63 endemic countries. They identify mutations that define the multidrug resistant (MDR) H58 lineage and report numerous inter- and intracontinental transmissions of this lineage as well as an ongoing MDR typhoid epidemic in Africa. The emergence of multidrug-resistant (MDR) typhoid is a major global health threat affecting many countries where the disease is endemic. Here whole-genome sequence analysis of 1,832 Salmonella enterica serovar Typhi ( S. Typhi) identifies a single dominant MDR lineage, H58, that has emerged and spread throughout Asia and Africa over the last 30 years. Our analysis identifies numerous transmissions of H58, including multiple transfers from Asia to Africa and an ongoing, unrecognized MDR epidemic within Africa itself. Notably, our analysis indicates that H58 lineages are displacing antibiotic-sensitive isolates, transforming the global population structure of this pathogen. H58 isolates can harbor a complex MDR element residing either on transmissible IncHI1 plasmids or within multiple chromosomal integration sites. We also identify new mutations that define the H58 lineage. This phylogeographical analysis provides a framework to facilitate global management of MDR typhoid and is applicable to similar MDR lineages emerging in other bacterial species.</abstract><cop>New York</cop><pub>Nature Publishing Group US</pub><pmid>25961941</pmid><doi>10.1038/ng.3281</doi><tpages>8</tpages><orcidid>https://orcid.org/0000-0003-1512-6194</orcidid><orcidid>https://orcid.org/0000-0002-1013-7815</orcidid><orcidid>https://orcid.org/0000-0002-4529-102X</orcidid><orcidid>https://orcid.org/0000-0003-3949-2471</orcidid><orcidid>https://orcid.org/0000-0002-7069-5958</orcidid><orcidid>https://orcid.org/000000024529102X</orcidid><orcidid>https://orcid.org/0000000210137815</orcidid><orcidid>https://orcid.org/0000000315126194</orcidid><orcidid>https://orcid.org/0000000270695958</orcidid><orcidid>https://orcid.org/0000000339492471</orcidid><orcidid>https://orcid.org/0000-0001-9941-5799</orcidid><oa>free_for_read</oa></addata></record>
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subjects 45/23
631/326/1320
Acquisitions & mergers
Agriculture
Analysis
Animal Genetics and Genomics
Anti-Bacterial Agents - pharmacology
Anti-Bacterial Agents - therapeutic use
Antibiotics
Australia
Bacterial genetics
Bacteriology
Biomedicine
Cancer Research
Councils
Data collection
Diseases
DNA sequencing
Drug resistance
Drug resistance in microorganisms
Drug Resistance, Multiple, Bacterial
Epidemics
Fiji
Gene Function
Genetic aspects
Genome, Bacterial
Genomes
Genomics
Global health
Haplotypes
Health
Health aspects
Health risks
Human Genetics
Humans
Identification and classification
India
Infectious diseases
Kenya
Life Sciences
Malawi
Medical research
Medical schools
Microbial drug resistance
Microbiology and Parasitology
Molecular Sequence Data
Mutation
Phylogenetics
Phylogeny
Phylogeography
Plasmids
Population
Population structure
Quinolines - pharmacology
Quinolines - therapeutic use
Salmonella
Salmonella typhi - genetics
Salmonella typhosa
Sequence Analysis, DNA
South Africa
Southeast Asia
Typhoid
Typhoid fever
Typhoid Fever - drug therapy
Typhoid Fever - microbiology
Typhoid Fever - transmission
United Kingdom
Vietnam
Virulence (Microbiology)
World health
title Phylogeographical analysis of the dominant multidrug-resistant H58 clade of Salmonella Typhi identifies inter- and intracontinental transmission events
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