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Clinical Origin and Species Distribution of Fusarium spp. Isolates Identified by Molecular Sequencing and Mass Spectrometry: A European Multicenter Hospital Prospective Study

Fusarium spp. are widespread environmental fungi as well as pathogens that can affect plants, animals and humans. Yet the epidemiology of human fusariosis is still cloudy due to the rapidly evolving taxonomy. The Mass Spectrometry Identification database (MSI) has been developed since 2017 in order...

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Autores principales: Normand, Anne-Cécile, Imbert, Sébastien, Brun, Sophie, Al-Hatmi, Abdullah M. S., Chryssanthou, Erja, Cassaing, Sophie, Schuttler, Christine, Hasseine, Lilia, Mahinc, Caroline, Costa, Damien, Bonnal, Christine, Ranque, Stéphane, Sautour, Marc, Rubio, Elisa, Delhaes, Laurence, Riat, Arnaud, Sendid, Boualem, Kristensen, Lise, Brandenberger, Marcel, Guitard, Juliette, Packeu, Ann, Piarroux, Renaud, Fekkar, Arnaud
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8064482/
https://www.ncbi.nlm.nih.gov/pubmed/33806102
http://dx.doi.org/10.3390/jof7040246
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author Normand, Anne-Cécile
Imbert, Sébastien
Brun, Sophie
Al-Hatmi, Abdullah M. S.
Chryssanthou, Erja
Cassaing, Sophie
Schuttler, Christine
Hasseine, Lilia
Mahinc, Caroline
Costa, Damien
Bonnal, Christine
Ranque, Stéphane
Sautour, Marc
Rubio, Elisa
Delhaes, Laurence
Riat, Arnaud
Sendid, Boualem
Kristensen, Lise
Brandenberger, Marcel
Guitard, Juliette
Packeu, Ann
Piarroux, Renaud
Fekkar, Arnaud
author_facet Normand, Anne-Cécile
Imbert, Sébastien
Brun, Sophie
Al-Hatmi, Abdullah M. S.
Chryssanthou, Erja
Cassaing, Sophie
Schuttler, Christine
Hasseine, Lilia
Mahinc, Caroline
Costa, Damien
Bonnal, Christine
Ranque, Stéphane
Sautour, Marc
Rubio, Elisa
Delhaes, Laurence
Riat, Arnaud
Sendid, Boualem
Kristensen, Lise
Brandenberger, Marcel
Guitard, Juliette
Packeu, Ann
Piarroux, Renaud
Fekkar, Arnaud
author_sort Normand, Anne-Cécile
collection PubMed
description Fusarium spp. are widespread environmental fungi as well as pathogens that can affect plants, animals and humans. Yet the epidemiology of human fusariosis is still cloudy due to the rapidly evolving taxonomy. The Mass Spectrometry Identification database (MSI) has been developed since 2017 in order to allow a fast, accurate and free-access identification of fungi by matrix-assisted laser desorption ionization—time of flight (MALDI-TOF) mass spectrometry. Taking advantage of the MSI database user network, we aim to study the species distribution of Fusarium spp. isolates in an international multicenter prospective study. This study also allowed the assessment of the abilities of miscellaneous techniques to identify Fusarium isolates at the species level. The identification was performed by PCR-sequencing and phylogenic-tree approach. Both methods are used as gold standard for the evaluation of mass spectrometry. Identification at the species complex was satisfactory for all the tested methods. However, identification at the species level was more challenging and only 32% of the isolates were correctly identified with the National Center for Biotechnology Information (NCBI) DNA database, 20% with the Bruker MS database and 43% with the two MSI databases. Improvement of the mass spectrometry database is still needed to enable precise identification at the species level of any Fusarium isolates encountered either in human pathology or in the environment.
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spelling pubmed-80644822021-04-24 Clinical Origin and Species Distribution of Fusarium spp. Isolates Identified by Molecular Sequencing and Mass Spectrometry: A European Multicenter Hospital Prospective Study Normand, Anne-Cécile Imbert, Sébastien Brun, Sophie Al-Hatmi, Abdullah M. S. Chryssanthou, Erja Cassaing, Sophie Schuttler, Christine Hasseine, Lilia Mahinc, Caroline Costa, Damien Bonnal, Christine Ranque, Stéphane Sautour, Marc Rubio, Elisa Delhaes, Laurence Riat, Arnaud Sendid, Boualem Kristensen, Lise Brandenberger, Marcel Guitard, Juliette Packeu, Ann Piarroux, Renaud Fekkar, Arnaud J Fungi (Basel) Article Fusarium spp. are widespread environmental fungi as well as pathogens that can affect plants, animals and humans. Yet the epidemiology of human fusariosis is still cloudy due to the rapidly evolving taxonomy. The Mass Spectrometry Identification database (MSI) has been developed since 2017 in order to allow a fast, accurate and free-access identification of fungi by matrix-assisted laser desorption ionization—time of flight (MALDI-TOF) mass spectrometry. Taking advantage of the MSI database user network, we aim to study the species distribution of Fusarium spp. isolates in an international multicenter prospective study. This study also allowed the assessment of the abilities of miscellaneous techniques to identify Fusarium isolates at the species level. The identification was performed by PCR-sequencing and phylogenic-tree approach. Both methods are used as gold standard for the evaluation of mass spectrometry. Identification at the species complex was satisfactory for all the tested methods. However, identification at the species level was more challenging and only 32% of the isolates were correctly identified with the National Center for Biotechnology Information (NCBI) DNA database, 20% with the Bruker MS database and 43% with the two MSI databases. Improvement of the mass spectrometry database is still needed to enable precise identification at the species level of any Fusarium isolates encountered either in human pathology or in the environment. MDPI 2021-03-25 /pmc/articles/PMC8064482/ /pubmed/33806102 http://dx.doi.org/10.3390/jof7040246 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Normand, Anne-Cécile
Imbert, Sébastien
Brun, Sophie
Al-Hatmi, Abdullah M. S.
Chryssanthou, Erja
Cassaing, Sophie
Schuttler, Christine
Hasseine, Lilia
Mahinc, Caroline
Costa, Damien
Bonnal, Christine
Ranque, Stéphane
Sautour, Marc
Rubio, Elisa
Delhaes, Laurence
Riat, Arnaud
Sendid, Boualem
Kristensen, Lise
Brandenberger, Marcel
Guitard, Juliette
Packeu, Ann
Piarroux, Renaud
Fekkar, Arnaud
Clinical Origin and Species Distribution of Fusarium spp. Isolates Identified by Molecular Sequencing and Mass Spectrometry: A European Multicenter Hospital Prospective Study
title Clinical Origin and Species Distribution of Fusarium spp. Isolates Identified by Molecular Sequencing and Mass Spectrometry: A European Multicenter Hospital Prospective Study
title_full Clinical Origin and Species Distribution of Fusarium spp. Isolates Identified by Molecular Sequencing and Mass Spectrometry: A European Multicenter Hospital Prospective Study
title_fullStr Clinical Origin and Species Distribution of Fusarium spp. Isolates Identified by Molecular Sequencing and Mass Spectrometry: A European Multicenter Hospital Prospective Study
title_full_unstemmed Clinical Origin and Species Distribution of Fusarium spp. Isolates Identified by Molecular Sequencing and Mass Spectrometry: A European Multicenter Hospital Prospective Study
title_short Clinical Origin and Species Distribution of Fusarium spp. Isolates Identified by Molecular Sequencing and Mass Spectrometry: A European Multicenter Hospital Prospective Study
title_sort clinical origin and species distribution of fusarium spp. isolates identified by molecular sequencing and mass spectrometry: a european multicenter hospital prospective study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8064482/
https://www.ncbi.nlm.nih.gov/pubmed/33806102
http://dx.doi.org/10.3390/jof7040246
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