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MetaSV: an accurate and integrative structural-variant caller for next generation sequencing

Summary: Structural variations (SVs) are large genomic rearrangements that vary significantly in size, making them challenging to detect with the relatively short reads from next-generation sequencing (NGS). Different SV detection methods have been developed; however, each is limited to specific kin...

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Autores principales: Mohiyuddin, Marghoob, Mu, John C., Li, Jian, Bani Asadi, Narges, Gerstein, Mark B., Abyzov, Alexej, Wong, Wing H., Lam, Hugo Y.K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4528635/
https://www.ncbi.nlm.nih.gov/pubmed/25861968
http://dx.doi.org/10.1093/bioinformatics/btv204
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author Mohiyuddin, Marghoob
Mu, John C.
Li, Jian
Bani Asadi, Narges
Gerstein, Mark B.
Abyzov, Alexej
Wong, Wing H.
Lam, Hugo Y.K.
author_facet Mohiyuddin, Marghoob
Mu, John C.
Li, Jian
Bani Asadi, Narges
Gerstein, Mark B.
Abyzov, Alexej
Wong, Wing H.
Lam, Hugo Y.K.
author_sort Mohiyuddin, Marghoob
collection PubMed
description Summary: Structural variations (SVs) are large genomic rearrangements that vary significantly in size, making them challenging to detect with the relatively short reads from next-generation sequencing (NGS). Different SV detection methods have been developed; however, each is limited to specific kinds of SVs with varying accuracy and resolution. Previous works have attempted to combine different methods, but they still suffer from poor accuracy particularly for insertions. We propose MetaSV, an integrated SV caller which leverages multiple orthogonal SV signals for high accuracy and resolution. MetaSV proceeds by merging SVs from multiple tools for all types of SVs. It also analyzes soft-clipped reads from alignment to detect insertions accurately since existing tools underestimate insertion SVs. Local assembly in combination with dynamic programming is used to improve breakpoint resolution. Paired-end and coverage information is used to predict SV genotypes. Using simulation and experimental data, we demonstrate the effectiveness of MetaSV across various SV types and sizes. Availability and implementation: Code in Python is at http://bioinform.github.io/metasv/. Contact: rd@bina.com Supplementary information: Supplementary data are available at Bioinformatics online.
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spelling pubmed-45286352015-08-11 MetaSV: an accurate and integrative structural-variant caller for next generation sequencing Mohiyuddin, Marghoob Mu, John C. Li, Jian Bani Asadi, Narges Gerstein, Mark B. Abyzov, Alexej Wong, Wing H. Lam, Hugo Y.K. Bioinformatics Applications Notes Summary: Structural variations (SVs) are large genomic rearrangements that vary significantly in size, making them challenging to detect with the relatively short reads from next-generation sequencing (NGS). Different SV detection methods have been developed; however, each is limited to specific kinds of SVs with varying accuracy and resolution. Previous works have attempted to combine different methods, but they still suffer from poor accuracy particularly for insertions. We propose MetaSV, an integrated SV caller which leverages multiple orthogonal SV signals for high accuracy and resolution. MetaSV proceeds by merging SVs from multiple tools for all types of SVs. It also analyzes soft-clipped reads from alignment to detect insertions accurately since existing tools underestimate insertion SVs. Local assembly in combination with dynamic programming is used to improve breakpoint resolution. Paired-end and coverage information is used to predict SV genotypes. Using simulation and experimental data, we demonstrate the effectiveness of MetaSV across various SV types and sizes. Availability and implementation: Code in Python is at http://bioinform.github.io/metasv/. Contact: rd@bina.com Supplementary information: Supplementary data are available at Bioinformatics online. Oxford University Press 2015-08-15 2015-04-10 /pmc/articles/PMC4528635/ /pubmed/25861968 http://dx.doi.org/10.1093/bioinformatics/btv204 Text en © The Author 2015. Published by Oxford University Press. 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 Applications Notes
Mohiyuddin, Marghoob
Mu, John C.
Li, Jian
Bani Asadi, Narges
Gerstein, Mark B.
Abyzov, Alexej
Wong, Wing H.
Lam, Hugo Y.K.
MetaSV: an accurate and integrative structural-variant caller for next generation sequencing
title MetaSV: an accurate and integrative structural-variant caller for next generation sequencing
title_full MetaSV: an accurate and integrative structural-variant caller for next generation sequencing
title_fullStr MetaSV: an accurate and integrative structural-variant caller for next generation sequencing
title_full_unstemmed MetaSV: an accurate and integrative structural-variant caller for next generation sequencing
title_short MetaSV: an accurate and integrative structural-variant caller for next generation sequencing
title_sort metasv: an accurate and integrative structural-variant caller for next generation sequencing
topic Applications Notes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4528635/
https://www.ncbi.nlm.nih.gov/pubmed/25861968
http://dx.doi.org/10.1093/bioinformatics/btv204
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