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Near-Complete Genome Sequencing of Swine Vesicular Disease Virus Using the Roche GS FLX Sequencing Platform

Swine vesicular disease virus (SVDV) is an enterovirus that is both genetically and antigenically closely related to human coxsackievirus B5 within the Picornaviridae family. SVDV is the causative agent of a highly contagious (though rarely fatal) vesicular disease in pigs. We report a rapid method...

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Autores principales: Nielsen, Sandra C. Abel, Bruhn, Christian A. W., Samaniego, Jose Alfredo, Wadsworth, Jemma, Knowles, Nick J., Gilbert, M. Thomas P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4016283/
https://www.ncbi.nlm.nih.gov/pubmed/24816564
http://dx.doi.org/10.1371/journal.pone.0097180
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author Nielsen, Sandra C. Abel
Bruhn, Christian A. W.
Samaniego, Jose Alfredo
Wadsworth, Jemma
Knowles, Nick J.
Gilbert, M. Thomas P.
author_facet Nielsen, Sandra C. Abel
Bruhn, Christian A. W.
Samaniego, Jose Alfredo
Wadsworth, Jemma
Knowles, Nick J.
Gilbert, M. Thomas P.
author_sort Nielsen, Sandra C. Abel
collection PubMed
description Swine vesicular disease virus (SVDV) is an enterovirus that is both genetically and antigenically closely related to human coxsackievirus B5 within the Picornaviridae family. SVDV is the causative agent of a highly contagious (though rarely fatal) vesicular disease in pigs. We report a rapid method that is suitable for sequencing the complete protein-encoding sequences of SVDV isolates in which the RNA is relatively intact. The approach couples a single PCR amplification reaction, using only a single PCR primer set to amplify the near-complete SVDV genome, with deep-sequencing using a small fraction of the capacity of a Roche GS FLX sequencing platform. Sequences were initially verified through one of two criteria; either a match between a de novo assembly and a reference mapping, or a match between all of five different reference mappings performed against a fixed set of starting reference genomes with significant genetic distances within the same species of viruses. All reference mappings used an iterative method to avoid bias. Further verification was achieved through phylogenetic analysis against published SVDV genomes and additional Enterovirus B sequences. This approach allows high confidence in the obtained consensus sequences, as well as provides sufficiently high and evenly dispersed sequence coverage to allow future studies of intra-host variation.
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spelling pubmed-40162832014-05-14 Near-Complete Genome Sequencing of Swine Vesicular Disease Virus Using the Roche GS FLX Sequencing Platform Nielsen, Sandra C. Abel Bruhn, Christian A. W. Samaniego, Jose Alfredo Wadsworth, Jemma Knowles, Nick J. Gilbert, M. Thomas P. PLoS One Research Article Swine vesicular disease virus (SVDV) is an enterovirus that is both genetically and antigenically closely related to human coxsackievirus B5 within the Picornaviridae family. SVDV is the causative agent of a highly contagious (though rarely fatal) vesicular disease in pigs. We report a rapid method that is suitable for sequencing the complete protein-encoding sequences of SVDV isolates in which the RNA is relatively intact. The approach couples a single PCR amplification reaction, using only a single PCR primer set to amplify the near-complete SVDV genome, with deep-sequencing using a small fraction of the capacity of a Roche GS FLX sequencing platform. Sequences were initially verified through one of two criteria; either a match between a de novo assembly and a reference mapping, or a match between all of five different reference mappings performed against a fixed set of starting reference genomes with significant genetic distances within the same species of viruses. All reference mappings used an iterative method to avoid bias. Further verification was achieved through phylogenetic analysis against published SVDV genomes and additional Enterovirus B sequences. This approach allows high confidence in the obtained consensus sequences, as well as provides sufficiently high and evenly dispersed sequence coverage to allow future studies of intra-host variation. Public Library of Science 2014-05-09 /pmc/articles/PMC4016283/ /pubmed/24816564 http://dx.doi.org/10.1371/journal.pone.0097180 Text en © 2014 Nielsen 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
Nielsen, Sandra C. Abel
Bruhn, Christian A. W.
Samaniego, Jose Alfredo
Wadsworth, Jemma
Knowles, Nick J.
Gilbert, M. Thomas P.
Near-Complete Genome Sequencing of Swine Vesicular Disease Virus Using the Roche GS FLX Sequencing Platform
title Near-Complete Genome Sequencing of Swine Vesicular Disease Virus Using the Roche GS FLX Sequencing Platform
title_full Near-Complete Genome Sequencing of Swine Vesicular Disease Virus Using the Roche GS FLX Sequencing Platform
title_fullStr Near-Complete Genome Sequencing of Swine Vesicular Disease Virus Using the Roche GS FLX Sequencing Platform
title_full_unstemmed Near-Complete Genome Sequencing of Swine Vesicular Disease Virus Using the Roche GS FLX Sequencing Platform
title_short Near-Complete Genome Sequencing of Swine Vesicular Disease Virus Using the Roche GS FLX Sequencing Platform
title_sort near-complete genome sequencing of swine vesicular disease virus using the roche gs flx sequencing platform
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4016283/
https://www.ncbi.nlm.nih.gov/pubmed/24816564
http://dx.doi.org/10.1371/journal.pone.0097180
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