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Bioinformatics Pipelines for Targeted Resequencing and Whole-Exome Sequencing of Human and Mouse Genomes: A Virtual Appliance Approach for Instant Deployment

Targeted resequencing by massively parallel sequencing has become an effective and affordable way to survey small to large portions of the genome for genetic variation. Despite the rapid development in open source software for analysis of such data, the practical implementation of these tools throug...

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Autores principales: Li, Jason, Doyle, Maria A., Saeed, Isaam, Wong, Stephen Q., Mar, Victoria, Goode, David L., Caramia, Franco, Doig, Ken, Ryland, Georgina L., Thompson, Ella R., Hunter, Sally M., Halgamuge, Saman K., Ellul, Jason, Dobrovic, Alexander, Campbell, Ian G., Papenfuss, Anthony T., McArthur, Grant A., Tothill, Richard W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3994043/
https://www.ncbi.nlm.nih.gov/pubmed/24752294
http://dx.doi.org/10.1371/journal.pone.0095217
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author Li, Jason
Doyle, Maria A.
Saeed, Isaam
Wong, Stephen Q.
Mar, Victoria
Goode, David L.
Caramia, Franco
Doig, Ken
Ryland, Georgina L.
Thompson, Ella R.
Hunter, Sally M.
Halgamuge, Saman K.
Ellul, Jason
Dobrovic, Alexander
Campbell, Ian G.
Papenfuss, Anthony T.
McArthur, Grant A.
Tothill, Richard W.
author_facet Li, Jason
Doyle, Maria A.
Saeed, Isaam
Wong, Stephen Q.
Mar, Victoria
Goode, David L.
Caramia, Franco
Doig, Ken
Ryland, Georgina L.
Thompson, Ella R.
Hunter, Sally M.
Halgamuge, Saman K.
Ellul, Jason
Dobrovic, Alexander
Campbell, Ian G.
Papenfuss, Anthony T.
McArthur, Grant A.
Tothill, Richard W.
author_sort Li, Jason
collection PubMed
description Targeted resequencing by massively parallel sequencing has become an effective and affordable way to survey small to large portions of the genome for genetic variation. Despite the rapid development in open source software for analysis of such data, the practical implementation of these tools through construction of sequencing analysis pipelines still remains a challenging and laborious activity, and a major hurdle for many small research and clinical laboratories. We developed TREVA (Targeted REsequencing Virtual Appliance), making pre-built pipelines immediately available as a virtual appliance. Based on virtual machine technologies, TREVA is a solution for rapid and efficient deployment of complex bioinformatics pipelines to laboratories of all sizes, enabling reproducible results. The analyses that are supported in TREVA include: somatic and germline single-nucleotide and insertion/deletion variant calling, copy number analysis, and cohort-based analyses such as pathway and significantly mutated genes analyses. TREVA is flexible and easy to use, and can be customised by Linux-based extensions if required. TREVA can also be deployed on the cloud (cloud computing), enabling instant access without investment overheads for additional hardware. TREVA is available at http://bioinformatics.petermac.org/treva/.
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spelling pubmed-39940432014-04-25 Bioinformatics Pipelines for Targeted Resequencing and Whole-Exome Sequencing of Human and Mouse Genomes: A Virtual Appliance Approach for Instant Deployment Li, Jason Doyle, Maria A. Saeed, Isaam Wong, Stephen Q. Mar, Victoria Goode, David L. Caramia, Franco Doig, Ken Ryland, Georgina L. Thompson, Ella R. Hunter, Sally M. Halgamuge, Saman K. Ellul, Jason Dobrovic, Alexander Campbell, Ian G. Papenfuss, Anthony T. McArthur, Grant A. Tothill, Richard W. PLoS One Research Article Targeted resequencing by massively parallel sequencing has become an effective and affordable way to survey small to large portions of the genome for genetic variation. Despite the rapid development in open source software for analysis of such data, the practical implementation of these tools through construction of sequencing analysis pipelines still remains a challenging and laborious activity, and a major hurdle for many small research and clinical laboratories. We developed TREVA (Targeted REsequencing Virtual Appliance), making pre-built pipelines immediately available as a virtual appliance. Based on virtual machine technologies, TREVA is a solution for rapid and efficient deployment of complex bioinformatics pipelines to laboratories of all sizes, enabling reproducible results. The analyses that are supported in TREVA include: somatic and germline single-nucleotide and insertion/deletion variant calling, copy number analysis, and cohort-based analyses such as pathway and significantly mutated genes analyses. TREVA is flexible and easy to use, and can be customised by Linux-based extensions if required. TREVA can also be deployed on the cloud (cloud computing), enabling instant access without investment overheads for additional hardware. TREVA is available at http://bioinformatics.petermac.org/treva/. Public Library of Science 2014-04-21 /pmc/articles/PMC3994043/ /pubmed/24752294 http://dx.doi.org/10.1371/journal.pone.0095217 Text en © 2014 Li 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
Li, Jason
Doyle, Maria A.
Saeed, Isaam
Wong, Stephen Q.
Mar, Victoria
Goode, David L.
Caramia, Franco
Doig, Ken
Ryland, Georgina L.
Thompson, Ella R.
Hunter, Sally M.
Halgamuge, Saman K.
Ellul, Jason
Dobrovic, Alexander
Campbell, Ian G.
Papenfuss, Anthony T.
McArthur, Grant A.
Tothill, Richard W.
Bioinformatics Pipelines for Targeted Resequencing and Whole-Exome Sequencing of Human and Mouse Genomes: A Virtual Appliance Approach for Instant Deployment
title Bioinformatics Pipelines for Targeted Resequencing and Whole-Exome Sequencing of Human and Mouse Genomes: A Virtual Appliance Approach for Instant Deployment
title_full Bioinformatics Pipelines for Targeted Resequencing and Whole-Exome Sequencing of Human and Mouse Genomes: A Virtual Appliance Approach for Instant Deployment
title_fullStr Bioinformatics Pipelines for Targeted Resequencing and Whole-Exome Sequencing of Human and Mouse Genomes: A Virtual Appliance Approach for Instant Deployment
title_full_unstemmed Bioinformatics Pipelines for Targeted Resequencing and Whole-Exome Sequencing of Human and Mouse Genomes: A Virtual Appliance Approach for Instant Deployment
title_short Bioinformatics Pipelines for Targeted Resequencing and Whole-Exome Sequencing of Human and Mouse Genomes: A Virtual Appliance Approach for Instant Deployment
title_sort bioinformatics pipelines for targeted resequencing and whole-exome sequencing of human and mouse genomes: a virtual appliance approach for instant deployment
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3994043/
https://www.ncbi.nlm.nih.gov/pubmed/24752294
http://dx.doi.org/10.1371/journal.pone.0095217
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