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A reference data set of 5.4 million phased human variants validated by genetic inheritance from sequencing a three-generation 17-member pedigree

Improvement of variant calling in next-generation sequence data requires a comprehensive, genome-wide catalog of high-confidence variants called in a set of genomes for use as a benchmark. We generated deep, whole-genome sequence data of 17 individuals in a three-generation pedigree and called varia...

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Autores principales: Eberle, Michael A., Fritzilas, Epameinondas, Krusche, Peter, Källberg, Morten, Moore, Benjamin L., Bekritsky, Mitchell A., Iqbal, Zamin, Chuang, Han-Yu, Humphray, Sean J., Halpern, Aaron L., Kruglyak, Semyon, Margulies, Elliott H., McVean, Gil, Bentley, David R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5204340/
https://www.ncbi.nlm.nih.gov/pubmed/27903644
http://dx.doi.org/10.1101/gr.210500.116
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author Eberle, Michael A.
Fritzilas, Epameinondas
Krusche, Peter
Källberg, Morten
Moore, Benjamin L.
Bekritsky, Mitchell A.
Iqbal, Zamin
Chuang, Han-Yu
Humphray, Sean J.
Halpern, Aaron L.
Kruglyak, Semyon
Margulies, Elliott H.
McVean, Gil
Bentley, David R.
author_facet Eberle, Michael A.
Fritzilas, Epameinondas
Krusche, Peter
Källberg, Morten
Moore, Benjamin L.
Bekritsky, Mitchell A.
Iqbal, Zamin
Chuang, Han-Yu
Humphray, Sean J.
Halpern, Aaron L.
Kruglyak, Semyon
Margulies, Elliott H.
McVean, Gil
Bentley, David R.
author_sort Eberle, Michael A.
collection PubMed
description Improvement of variant calling in next-generation sequence data requires a comprehensive, genome-wide catalog of high-confidence variants called in a set of genomes for use as a benchmark. We generated deep, whole-genome sequence data of 17 individuals in a three-generation pedigree and called variants in each genome using a range of currently available algorithms. We used haplotype transmission information to create a phased “Platinum” variant catalog of 4.7 million single-nucleotide variants (SNVs) plus 0.7 million small (1–50 bp) insertions and deletions (indels) that are consistent with the pattern of inheritance in the parents and 11 children of this pedigree. Platinum genotypes are highly concordant with the current catalog of the National Institute of Standards and Technology for both SNVs (>99.99%) and indels (99.92%) and add a validated truth catalog that has 26% more SNVs and 45% more indels. Analysis of 334,652 SNVs that were consistent between informatics pipelines yet inconsistent with haplotype transmission (“nonplatinum”) revealed that the majority of these variants are de novo and cell-line mutations or reside within previously unidentified duplications and deletions. The reference materials from this study are a resource for objective assessment of the accuracy of variant calls throughout genomes.
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spelling pubmed-52043402017-01-17 A reference data set of 5.4 million phased human variants validated by genetic inheritance from sequencing a three-generation 17-member pedigree Eberle, Michael A. Fritzilas, Epameinondas Krusche, Peter Källberg, Morten Moore, Benjamin L. Bekritsky, Mitchell A. Iqbal, Zamin Chuang, Han-Yu Humphray, Sean J. Halpern, Aaron L. Kruglyak, Semyon Margulies, Elliott H. McVean, Gil Bentley, David R. Genome Res Resource Improvement of variant calling in next-generation sequence data requires a comprehensive, genome-wide catalog of high-confidence variants called in a set of genomes for use as a benchmark. We generated deep, whole-genome sequence data of 17 individuals in a three-generation pedigree and called variants in each genome using a range of currently available algorithms. We used haplotype transmission information to create a phased “Platinum” variant catalog of 4.7 million single-nucleotide variants (SNVs) plus 0.7 million small (1–50 bp) insertions and deletions (indels) that are consistent with the pattern of inheritance in the parents and 11 children of this pedigree. Platinum genotypes are highly concordant with the current catalog of the National Institute of Standards and Technology for both SNVs (>99.99%) and indels (99.92%) and add a validated truth catalog that has 26% more SNVs and 45% more indels. Analysis of 334,652 SNVs that were consistent between informatics pipelines yet inconsistent with haplotype transmission (“nonplatinum”) revealed that the majority of these variants are de novo and cell-line mutations or reside within previously unidentified duplications and deletions. The reference materials from this study are a resource for objective assessment of the accuracy of variant calls throughout genomes. Cold Spring Harbor Laboratory Press 2017-01 /pmc/articles/PMC5204340/ /pubmed/27903644 http://dx.doi.org/10.1101/gr.210500.116 Text en © 2017 Eberle et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article, published in Genome Research, is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Resource
Eberle, Michael A.
Fritzilas, Epameinondas
Krusche, Peter
Källberg, Morten
Moore, Benjamin L.
Bekritsky, Mitchell A.
Iqbal, Zamin
Chuang, Han-Yu
Humphray, Sean J.
Halpern, Aaron L.
Kruglyak, Semyon
Margulies, Elliott H.
McVean, Gil
Bentley, David R.
A reference data set of 5.4 million phased human variants validated by genetic inheritance from sequencing a three-generation 17-member pedigree
title A reference data set of 5.4 million phased human variants validated by genetic inheritance from sequencing a three-generation 17-member pedigree
title_full A reference data set of 5.4 million phased human variants validated by genetic inheritance from sequencing a three-generation 17-member pedigree
title_fullStr A reference data set of 5.4 million phased human variants validated by genetic inheritance from sequencing a three-generation 17-member pedigree
title_full_unstemmed A reference data set of 5.4 million phased human variants validated by genetic inheritance from sequencing a three-generation 17-member pedigree
title_short A reference data set of 5.4 million phased human variants validated by genetic inheritance from sequencing a three-generation 17-member pedigree
title_sort reference data set of 5.4 million phased human variants validated by genetic inheritance from sequencing a three-generation 17-member pedigree
topic Resource
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5204340/
https://www.ncbi.nlm.nih.gov/pubmed/27903644
http://dx.doi.org/10.1101/gr.210500.116
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