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A European-wide dataset to uncover adaptive traits of Listeria monocytogenes to diverse ecological niches

Listeria monocytogenes (Lm) is a ubiquitous bacterium that causes listeriosis, a serious foodborne illness. In the nature-to-human transmission route, Lm can prosper in various ecological niches. Soil and decaying organic matter are its primary reservoirs. Certain clonal complexes (CCs) are over-rep...

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Autores principales: Félix, Benjamin, Sevellec, Yann, Palma, Federica, Douarre, Pierre Emmanuel, Felten, Arnaud, Radomski, Nicolas, Mallet, Ludovic, Blanchard, Yannick, Leroux, Aurélie, Soumet, Christophe, Bridier, Arnaud, Piveteau, Pascal, Ascensio, Eliette, Hébraud, Michel, Karpíšková, Renáta, Gelbíčová, Tereza, Torresi, Marina, Pomilio, Francesco, Cammà, Cesare, Di Pasquale, Adriano, Skjerdal, Taran, Pietzka, Ariane, Ruppitsch, Werner, Canelhas, Monica Ricão, Papić, Bojan, Hurtado, Ana, Wullings, Bart, Bulawova, Hana, Castro, Hanna, Lindström, Miia, Korkeala, Hannu, Šteingolde, Žanete, Kramarenko, Toomas, Cabanova, Lenka, Szymczak, Barbara, Gareis, Manfred, Oswaldi, Verena, Marti, Elisabet, Seyfarth, Anne-Mette, Leblanc, Jean-Charles, Guillier, Laurent, Roussel, Sophie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9050667/
https://www.ncbi.nlm.nih.gov/pubmed/35484273
http://dx.doi.org/10.1038/s41597-022-01278-6
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author Félix, Benjamin
Sevellec, Yann
Palma, Federica
Douarre, Pierre Emmanuel
Felten, Arnaud
Radomski, Nicolas
Mallet, Ludovic
Blanchard, Yannick
Leroux, Aurélie
Soumet, Christophe
Bridier, Arnaud
Piveteau, Pascal
Ascensio, Eliette
Hébraud, Michel
Karpíšková, Renáta
Gelbíčová, Tereza
Torresi, Marina
Pomilio, Francesco
Cammà, Cesare
Di Pasquale, Adriano
Skjerdal, Taran
Pietzka, Ariane
Ruppitsch, Werner
Canelhas, Monica Ricão
Papić, Bojan
Hurtado, Ana
Wullings, Bart
Bulawova, Hana
Castro, Hanna
Lindström, Miia
Korkeala, Hannu
Šteingolde, Žanete
Kramarenko, Toomas
Cabanova, Lenka
Szymczak, Barbara
Gareis, Manfred
Oswaldi, Verena
Marti, Elisabet
Seyfarth, Anne-Mette
Leblanc, Jean-Charles
Guillier, Laurent
Roussel, Sophie
author_facet Félix, Benjamin
Sevellec, Yann
Palma, Federica
Douarre, Pierre Emmanuel
Felten, Arnaud
Radomski, Nicolas
Mallet, Ludovic
Blanchard, Yannick
Leroux, Aurélie
Soumet, Christophe
Bridier, Arnaud
Piveteau, Pascal
Ascensio, Eliette
Hébraud, Michel
Karpíšková, Renáta
Gelbíčová, Tereza
Torresi, Marina
Pomilio, Francesco
Cammà, Cesare
Di Pasquale, Adriano
Skjerdal, Taran
Pietzka, Ariane
Ruppitsch, Werner
Canelhas, Monica Ricão
Papić, Bojan
Hurtado, Ana
Wullings, Bart
Bulawova, Hana
Castro, Hanna
Lindström, Miia
Korkeala, Hannu
Šteingolde, Žanete
Kramarenko, Toomas
Cabanova, Lenka
Szymczak, Barbara
Gareis, Manfred
Oswaldi, Verena
Marti, Elisabet
Seyfarth, Anne-Mette
Leblanc, Jean-Charles
Guillier, Laurent
Roussel, Sophie
author_sort Félix, Benjamin
collection PubMed
description Listeria monocytogenes (Lm) is a ubiquitous bacterium that causes listeriosis, a serious foodborne illness. In the nature-to-human transmission route, Lm can prosper in various ecological niches. Soil and decaying organic matter are its primary reservoirs. Certain clonal complexes (CCs) are over-represented in food production and represent a challenge to food safety. To gain new understanding of Lm adaptation mechanisms in food, the genetic background of strains found in animals and environment should be investigated in comparison to that of food strains. Twenty-one partners, including food, environment, veterinary and public health laboratories, constructed a dataset of 1484 genomes originating from Lm strains collected in 19 European countries. This dataset encompasses a large number of CCs occurring worldwide, covers many diverse habitats and is balanced between ecological compartments and geographic regions. The dataset presented here will contribute to improve our understanding of Lm ecology and should aid in the surveillance of Lm. This dataset provides a basis for the discovery of the genetic traits underlying Lm adaptation to different ecological niches.
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spelling pubmed-90506672022-04-30 A European-wide dataset to uncover adaptive traits of Listeria monocytogenes to diverse ecological niches Félix, Benjamin Sevellec, Yann Palma, Federica Douarre, Pierre Emmanuel Felten, Arnaud Radomski, Nicolas Mallet, Ludovic Blanchard, Yannick Leroux, Aurélie Soumet, Christophe Bridier, Arnaud Piveteau, Pascal Ascensio, Eliette Hébraud, Michel Karpíšková, Renáta Gelbíčová, Tereza Torresi, Marina Pomilio, Francesco Cammà, Cesare Di Pasquale, Adriano Skjerdal, Taran Pietzka, Ariane Ruppitsch, Werner Canelhas, Monica Ricão Papić, Bojan Hurtado, Ana Wullings, Bart Bulawova, Hana Castro, Hanna Lindström, Miia Korkeala, Hannu Šteingolde, Žanete Kramarenko, Toomas Cabanova, Lenka Szymczak, Barbara Gareis, Manfred Oswaldi, Verena Marti, Elisabet Seyfarth, Anne-Mette Leblanc, Jean-Charles Guillier, Laurent Roussel, Sophie Sci Data Data Descriptor Listeria monocytogenes (Lm) is a ubiquitous bacterium that causes listeriosis, a serious foodborne illness. In the nature-to-human transmission route, Lm can prosper in various ecological niches. Soil and decaying organic matter are its primary reservoirs. Certain clonal complexes (CCs) are over-represented in food production and represent a challenge to food safety. To gain new understanding of Lm adaptation mechanisms in food, the genetic background of strains found in animals and environment should be investigated in comparison to that of food strains. Twenty-one partners, including food, environment, veterinary and public health laboratories, constructed a dataset of 1484 genomes originating from Lm strains collected in 19 European countries. This dataset encompasses a large number of CCs occurring worldwide, covers many diverse habitats and is balanced between ecological compartments and geographic regions. The dataset presented here will contribute to improve our understanding of Lm ecology and should aid in the surveillance of Lm. This dataset provides a basis for the discovery of the genetic traits underlying Lm adaptation to different ecological niches. Nature Publishing Group UK 2022-04-28 /pmc/articles/PMC9050667/ /pubmed/35484273 http://dx.doi.org/10.1038/s41597-022-01278-6 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Data Descriptor
Félix, Benjamin
Sevellec, Yann
Palma, Federica
Douarre, Pierre Emmanuel
Felten, Arnaud
Radomski, Nicolas
Mallet, Ludovic
Blanchard, Yannick
Leroux, Aurélie
Soumet, Christophe
Bridier, Arnaud
Piveteau, Pascal
Ascensio, Eliette
Hébraud, Michel
Karpíšková, Renáta
Gelbíčová, Tereza
Torresi, Marina
Pomilio, Francesco
Cammà, Cesare
Di Pasquale, Adriano
Skjerdal, Taran
Pietzka, Ariane
Ruppitsch, Werner
Canelhas, Monica Ricão
Papić, Bojan
Hurtado, Ana
Wullings, Bart
Bulawova, Hana
Castro, Hanna
Lindström, Miia
Korkeala, Hannu
Šteingolde, Žanete
Kramarenko, Toomas
Cabanova, Lenka
Szymczak, Barbara
Gareis, Manfred
Oswaldi, Verena
Marti, Elisabet
Seyfarth, Anne-Mette
Leblanc, Jean-Charles
Guillier, Laurent
Roussel, Sophie
A European-wide dataset to uncover adaptive traits of Listeria monocytogenes to diverse ecological niches
title A European-wide dataset to uncover adaptive traits of Listeria monocytogenes to diverse ecological niches
title_full A European-wide dataset to uncover adaptive traits of Listeria monocytogenes to diverse ecological niches
title_fullStr A European-wide dataset to uncover adaptive traits of Listeria monocytogenes to diverse ecological niches
title_full_unstemmed A European-wide dataset to uncover adaptive traits of Listeria monocytogenes to diverse ecological niches
title_short A European-wide dataset to uncover adaptive traits of Listeria monocytogenes to diverse ecological niches
title_sort european-wide dataset to uncover adaptive traits of listeria monocytogenes to diverse ecological niches
topic Data Descriptor
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9050667/
https://www.ncbi.nlm.nih.gov/pubmed/35484273
http://dx.doi.org/10.1038/s41597-022-01278-6
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