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Genomic Characterization Helps Dissecting an Outbreak of Listeriosis in Northern Italy

INTRODUCTION: Listeria monocytogenes (Lm) is a bacterium widely distributed in nature and able to contaminate food processing environments, including those of dairy products. Lm is a primary public health issue, due to the very low infectious dose and the ability to produce severe outcomes, in parti...

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Autores principales: Comandatore, Francesco, Corbella, Marta, Andreoli, Giuseppina, Scaltriti, Erika, Aguzzi, Massimo, Gaiarsa, Stefano, Mariani, Bianca, Morganti, Marina, Bandi, Claudio, Fabbi, Massimo, Marone, Piero, Pongolini, Stefano, Sassera, Davide
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5510990/
https://www.ncbi.nlm.nih.gov/pubmed/28856063
http://dx.doi.org/10.1371/currents.outbreaks.633fd8994e9f06f31b3494567c7e504c
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author Comandatore, Francesco
Corbella, Marta
Andreoli, Giuseppina
Scaltriti, Erika
Aguzzi, Massimo
Gaiarsa, Stefano
Mariani, Bianca
Morganti, Marina
Bandi, Claudio
Fabbi, Massimo
Marone, Piero
Pongolini, Stefano
Sassera, Davide
author_facet Comandatore, Francesco
Corbella, Marta
Andreoli, Giuseppina
Scaltriti, Erika
Aguzzi, Massimo
Gaiarsa, Stefano
Mariani, Bianca
Morganti, Marina
Bandi, Claudio
Fabbi, Massimo
Marone, Piero
Pongolini, Stefano
Sassera, Davide
author_sort Comandatore, Francesco
collection PubMed
description INTRODUCTION: Listeria monocytogenes (Lm) is a bacterium widely distributed in nature and able to contaminate food processing environments, including those of dairy products. Lm is a primary public health issue, due to the very low infectious dose and the ability to produce severe outcomes, in particular in elderly, newborns, pregnant women and immunocompromised patients. METHODS: In the period between April and July 2015, an increased number of cases of listeriosis was observed in the area of Pavia, Northern Italy. An epidemiological investigation identified a cheesemaking small organic farm as the possible origin of the outbreak. In this work we present the results of the retrospective epidemiological study that we performed using molecular biology and genomic epidemiology methods. The strains sampled from patients and those from the target farm's cheese were analyzed using PFGE and whole genome sequencing (WGS) based methods. The performed WGS based analyses included: a) in-silico MLST typing; b) SNPs calling and genetic distance evaluation; c) determination of the resistance and virulence genes profiles; d) SNPs based phylogenetic reconstruction. RESULTS: Three of the patient strains and all the cheese strains resulted to belong to the same phylogenetic cluster, in Sequence Type 29. A further accurate SNPs analysis revealed that two of the three patient strains and all the cheese strains were highly similar (0.8 SNPs of average distance) and exhibited a higer distance from the third patient isolate (9.4 SNPs of average distance). DISCUSSION: Despite the global agreement among the results of the PFGE and WGS epidemiological studies, the latter approach agree with epidemiological data in indicating that one the patient strains could have originated from a different source. This result highlights that WGS methods can allow to better
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spelling pubmed-55109902017-08-29 Genomic Characterization Helps Dissecting an Outbreak of Listeriosis in Northern Italy Comandatore, Francesco Corbella, Marta Andreoli, Giuseppina Scaltriti, Erika Aguzzi, Massimo Gaiarsa, Stefano Mariani, Bianca Morganti, Marina Bandi, Claudio Fabbi, Massimo Marone, Piero Pongolini, Stefano Sassera, Davide PLoS Curr Research Article INTRODUCTION: Listeria monocytogenes (Lm) is a bacterium widely distributed in nature and able to contaminate food processing environments, including those of dairy products. Lm is a primary public health issue, due to the very low infectious dose and the ability to produce severe outcomes, in particular in elderly, newborns, pregnant women and immunocompromised patients. METHODS: In the period between April and July 2015, an increased number of cases of listeriosis was observed in the area of Pavia, Northern Italy. An epidemiological investigation identified a cheesemaking small organic farm as the possible origin of the outbreak. In this work we present the results of the retrospective epidemiological study that we performed using molecular biology and genomic epidemiology methods. The strains sampled from patients and those from the target farm's cheese were analyzed using PFGE and whole genome sequencing (WGS) based methods. The performed WGS based analyses included: a) in-silico MLST typing; b) SNPs calling and genetic distance evaluation; c) determination of the resistance and virulence genes profiles; d) SNPs based phylogenetic reconstruction. RESULTS: Three of the patient strains and all the cheese strains resulted to belong to the same phylogenetic cluster, in Sequence Type 29. A further accurate SNPs analysis revealed that two of the three patient strains and all the cheese strains were highly similar (0.8 SNPs of average distance) and exhibited a higer distance from the third patient isolate (9.4 SNPs of average distance). DISCUSSION: Despite the global agreement among the results of the PFGE and WGS epidemiological studies, the latter approach agree with epidemiological data in indicating that one the patient strains could have originated from a different source. This result highlights that WGS methods can allow to better Public Library of Science 2017-07-06 /pmc/articles/PMC5510990/ /pubmed/28856063 http://dx.doi.org/10.1371/currents.outbreaks.633fd8994e9f06f31b3494567c7e504c Text en © 2017 Comandatore, Corbella, Andreoli, Scaltriti, Aguzzi, Gaiarsa, Mariani, Morganti, Bandi, Fabbi, Marone, Pongolini, Sassera, 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Comandatore, Francesco
Corbella, Marta
Andreoli, Giuseppina
Scaltriti, Erika
Aguzzi, Massimo
Gaiarsa, Stefano
Mariani, Bianca
Morganti, Marina
Bandi, Claudio
Fabbi, Massimo
Marone, Piero
Pongolini, Stefano
Sassera, Davide
Genomic Characterization Helps Dissecting an Outbreak of Listeriosis in Northern Italy
title Genomic Characterization Helps Dissecting an Outbreak of Listeriosis in Northern Italy
title_full Genomic Characterization Helps Dissecting an Outbreak of Listeriosis in Northern Italy
title_fullStr Genomic Characterization Helps Dissecting an Outbreak of Listeriosis in Northern Italy
title_full_unstemmed Genomic Characterization Helps Dissecting an Outbreak of Listeriosis in Northern Italy
title_short Genomic Characterization Helps Dissecting an Outbreak of Listeriosis in Northern Italy
title_sort genomic characterization helps dissecting an outbreak of listeriosis in northern italy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5510990/
https://www.ncbi.nlm.nih.gov/pubmed/28856063
http://dx.doi.org/10.1371/currents.outbreaks.633fd8994e9f06f31b3494567c7e504c
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