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CRISPR Typing and Subtyping for Improved Laboratory Surveillance of Salmonella Infections

Laboratory surveillance systems for salmonellosis should ideally be based on the rapid serotyping and subtyping of isolates. However, current typing methods are limited in both speed and precision. Using 783 strains and isolates belonging to 130 serotypes, we show here that a new family of DNA repea...

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Autores principales: Fabre, Laëtitia, Zhang, Jian, Guigon, Ghislaine, Le Hello, Simon, Guibert, Véronique, Accou-Demartin, Marie, de Romans, Saïana, Lim, Catherine, Roux, Chrystelle, Passet, Virginie, Diancourt, Laure, Guibourdenche, Martine, Issenhuth-Jeanjean, Sylvie, Achtman, Mark, Brisse, Sylvain, Sola, Christophe, Weill, François-Xavier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3356390/
https://www.ncbi.nlm.nih.gov/pubmed/22623967
http://dx.doi.org/10.1371/journal.pone.0036995
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author Fabre, Laëtitia
Zhang, Jian
Guigon, Ghislaine
Le Hello, Simon
Guibert, Véronique
Accou-Demartin, Marie
de Romans, Saïana
Lim, Catherine
Roux, Chrystelle
Passet, Virginie
Diancourt, Laure
Guibourdenche, Martine
Issenhuth-Jeanjean, Sylvie
Achtman, Mark
Brisse, Sylvain
Sola, Christophe
Weill, François-Xavier
author_facet Fabre, Laëtitia
Zhang, Jian
Guigon, Ghislaine
Le Hello, Simon
Guibert, Véronique
Accou-Demartin, Marie
de Romans, Saïana
Lim, Catherine
Roux, Chrystelle
Passet, Virginie
Diancourt, Laure
Guibourdenche, Martine
Issenhuth-Jeanjean, Sylvie
Achtman, Mark
Brisse, Sylvain
Sola, Christophe
Weill, François-Xavier
author_sort Fabre, Laëtitia
collection PubMed
description Laboratory surveillance systems for salmonellosis should ideally be based on the rapid serotyping and subtyping of isolates. However, current typing methods are limited in both speed and precision. Using 783 strains and isolates belonging to 130 serotypes, we show here that a new family of DNA repeats named CRISPR (clustered regularly interspaced short palindromic repeats) is highly polymorphic in Salmonella. We found that CRISPR polymorphism was strongly correlated with both serotype and multilocus sequence type. Furthermore, spacer microevolution discriminated between subtypes within prevalent serotypes, making it possible to carry out typing and subtyping in a single step. We developed a high-throughput subtyping assay for the most prevalent serotype, Typhimurium. An open web-accessible database was set up, providing a serotype/spacer dictionary and an international tool for strain tracking based on this innovative, powerful typing and subtyping tool.
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spelling pubmed-33563902012-05-23 CRISPR Typing and Subtyping for Improved Laboratory Surveillance of Salmonella Infections Fabre, Laëtitia Zhang, Jian Guigon, Ghislaine Le Hello, Simon Guibert, Véronique Accou-Demartin, Marie de Romans, Saïana Lim, Catherine Roux, Chrystelle Passet, Virginie Diancourt, Laure Guibourdenche, Martine Issenhuth-Jeanjean, Sylvie Achtman, Mark Brisse, Sylvain Sola, Christophe Weill, François-Xavier PLoS One Research Article Laboratory surveillance systems for salmonellosis should ideally be based on the rapid serotyping and subtyping of isolates. However, current typing methods are limited in both speed and precision. Using 783 strains and isolates belonging to 130 serotypes, we show here that a new family of DNA repeats named CRISPR (clustered regularly interspaced short palindromic repeats) is highly polymorphic in Salmonella. We found that CRISPR polymorphism was strongly correlated with both serotype and multilocus sequence type. Furthermore, spacer microevolution discriminated between subtypes within prevalent serotypes, making it possible to carry out typing and subtyping in a single step. We developed a high-throughput subtyping assay for the most prevalent serotype, Typhimurium. An open web-accessible database was set up, providing a serotype/spacer dictionary and an international tool for strain tracking based on this innovative, powerful typing and subtyping tool. Public Library of Science 2012-05-18 /pmc/articles/PMC3356390/ /pubmed/22623967 http://dx.doi.org/10.1371/journal.pone.0036995 Text en Fabre et al. 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 author and source are properly credited.
spellingShingle Research Article
Fabre, Laëtitia
Zhang, Jian
Guigon, Ghislaine
Le Hello, Simon
Guibert, Véronique
Accou-Demartin, Marie
de Romans, Saïana
Lim, Catherine
Roux, Chrystelle
Passet, Virginie
Diancourt, Laure
Guibourdenche, Martine
Issenhuth-Jeanjean, Sylvie
Achtman, Mark
Brisse, Sylvain
Sola, Christophe
Weill, François-Xavier
CRISPR Typing and Subtyping for Improved Laboratory Surveillance of Salmonella Infections
title CRISPR Typing and Subtyping for Improved Laboratory Surveillance of Salmonella Infections
title_full CRISPR Typing and Subtyping for Improved Laboratory Surveillance of Salmonella Infections
title_fullStr CRISPR Typing and Subtyping for Improved Laboratory Surveillance of Salmonella Infections
title_full_unstemmed CRISPR Typing and Subtyping for Improved Laboratory Surveillance of Salmonella Infections
title_short CRISPR Typing and Subtyping for Improved Laboratory Surveillance of Salmonella Infections
title_sort crispr typing and subtyping for improved laboratory surveillance of salmonella infections
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3356390/
https://www.ncbi.nlm.nih.gov/pubmed/22623967
http://dx.doi.org/10.1371/journal.pone.0036995
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