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MicroScope: an integrated platform for the annotation and exploration of microbial gene functions through genomic, pangenomic and metabolic comparative analysis

Large-scale genome sequencing and the increasingly massive use of high-throughput approaches produce a vast amount of new information that completely transforms our understanding of thousands of microbial species. However, despite the development of powerful bioinformatics approaches, full interpret...

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Autores principales: Vallenet, David, Calteau, Alexandra, Dubois, Mathieu, Amours, Paul, Bazin, Adelme, Beuvin, Mylène, Burlot, Laura, Bussell, Xavier, Fouteau, Stéphanie, Gautreau, Guillaume, Lajus, Aurélie, Langlois, Jordan, Planel, Rémi, Roche, David, Rollin, Johan, Rouy, Zoe, Sabatet, Valentin, Médigue, Claudine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7145621/
https://www.ncbi.nlm.nih.gov/pubmed/31647104
http://dx.doi.org/10.1093/nar/gkz926
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author Vallenet, David
Calteau, Alexandra
Dubois, Mathieu
Amours, Paul
Bazin, Adelme
Beuvin, Mylène
Burlot, Laura
Bussell, Xavier
Fouteau, Stéphanie
Gautreau, Guillaume
Lajus, Aurélie
Langlois, Jordan
Planel, Rémi
Roche, David
Rollin, Johan
Rouy, Zoe
Sabatet, Valentin
Médigue, Claudine
author_facet Vallenet, David
Calteau, Alexandra
Dubois, Mathieu
Amours, Paul
Bazin, Adelme
Beuvin, Mylène
Burlot, Laura
Bussell, Xavier
Fouteau, Stéphanie
Gautreau, Guillaume
Lajus, Aurélie
Langlois, Jordan
Planel, Rémi
Roche, David
Rollin, Johan
Rouy, Zoe
Sabatet, Valentin
Médigue, Claudine
author_sort Vallenet, David
collection PubMed
description Large-scale genome sequencing and the increasingly massive use of high-throughput approaches produce a vast amount of new information that completely transforms our understanding of thousands of microbial species. However, despite the development of powerful bioinformatics approaches, full interpretation of the content of these genomes remains a difficult task. Launched in 2005, the MicroScope platform (https://www.genoscope.cns.fr/agc/microscope) has been under continuous development and provides analysis for prokaryotic genome projects together with metabolic network reconstruction and post-genomic experiments allowing users to improve the understanding of gene functions. Here we present new improvements of the MicroScope user interface for genome selection, navigation and expert gene annotation. Automatic functional annotation procedures of the platform have also been updated and we added several new tools for the functional annotation of genes and genomic regions. We finally focus on new tools and pipeline developed to perform comparative analyses on hundreds of genomes based on pangenome graphs. To date, MicroScope contains data for >11 800 microbial genomes, part of which are manually curated and maintained by microbiologists (>4500 personal accounts in September 2019). The platform enables collaborative work in a rich comparative genomic context and improves community-based curation efforts.
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spelling pubmed-71456212020-04-13 MicroScope: an integrated platform for the annotation and exploration of microbial gene functions through genomic, pangenomic and metabolic comparative analysis Vallenet, David Calteau, Alexandra Dubois, Mathieu Amours, Paul Bazin, Adelme Beuvin, Mylène Burlot, Laura Bussell, Xavier Fouteau, Stéphanie Gautreau, Guillaume Lajus, Aurélie Langlois, Jordan Planel, Rémi Roche, David Rollin, Johan Rouy, Zoe Sabatet, Valentin Médigue, Claudine Nucleic Acids Res Database Issue Large-scale genome sequencing and the increasingly massive use of high-throughput approaches produce a vast amount of new information that completely transforms our understanding of thousands of microbial species. However, despite the development of powerful bioinformatics approaches, full interpretation of the content of these genomes remains a difficult task. Launched in 2005, the MicroScope platform (https://www.genoscope.cns.fr/agc/microscope) has been under continuous development and provides analysis for prokaryotic genome projects together with metabolic network reconstruction and post-genomic experiments allowing users to improve the understanding of gene functions. Here we present new improvements of the MicroScope user interface for genome selection, navigation and expert gene annotation. Automatic functional annotation procedures of the platform have also been updated and we added several new tools for the functional annotation of genes and genomic regions. We finally focus on new tools and pipeline developed to perform comparative analyses on hundreds of genomes based on pangenome graphs. To date, MicroScope contains data for >11 800 microbial genomes, part of which are manually curated and maintained by microbiologists (>4500 personal accounts in September 2019). The platform enables collaborative work in a rich comparative genomic context and improves community-based curation efforts. Oxford University Press 2020-01-08 2019-10-24 /pmc/articles/PMC7145621/ /pubmed/31647104 http://dx.doi.org/10.1093/nar/gkz926 Text en © The Author(s) 2019. Published by Oxford University Press on behalf of Nucleic Acids Research. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Database Issue
Vallenet, David
Calteau, Alexandra
Dubois, Mathieu
Amours, Paul
Bazin, Adelme
Beuvin, Mylène
Burlot, Laura
Bussell, Xavier
Fouteau, Stéphanie
Gautreau, Guillaume
Lajus, Aurélie
Langlois, Jordan
Planel, Rémi
Roche, David
Rollin, Johan
Rouy, Zoe
Sabatet, Valentin
Médigue, Claudine
MicroScope: an integrated platform for the annotation and exploration of microbial gene functions through genomic, pangenomic and metabolic comparative analysis
title MicroScope: an integrated platform for the annotation and exploration of microbial gene functions through genomic, pangenomic and metabolic comparative analysis
title_full MicroScope: an integrated platform for the annotation and exploration of microbial gene functions through genomic, pangenomic and metabolic comparative analysis
title_fullStr MicroScope: an integrated platform for the annotation and exploration of microbial gene functions through genomic, pangenomic and metabolic comparative analysis
title_full_unstemmed MicroScope: an integrated platform for the annotation and exploration of microbial gene functions through genomic, pangenomic and metabolic comparative analysis
title_short MicroScope: an integrated platform for the annotation and exploration of microbial gene functions through genomic, pangenomic and metabolic comparative analysis
title_sort microscope: an integrated platform for the annotation and exploration of microbial gene functions through genomic, pangenomic and metabolic comparative analysis
topic Database Issue
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7145621/
https://www.ncbi.nlm.nih.gov/pubmed/31647104
http://dx.doi.org/10.1093/nar/gkz926
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