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Genome-wide association of multiple complex traits in outbred mice by ultra low-coverage sequencing

Two bottlenecks impeding the genetic analysis of complex traits in rodents are access to mapping populations able to deliver gene-level mapping resolution, and the need for population specific genotyping arrays and haplotype reference panels. Here we combine low coverage sequencing (0.15X) with a no...

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Autores principales: Nicod, Jérôme, Davies, Robert W., Cai, Na, Hassett, Carl, Goodstadt, Leo, Cosgrove, Cormac, Yee, Benjamin K, Lionikaite, Vikte, McIntyre, Rebecca E, Remme, Carol Ann, Lodder, Elisabeth M., Gregory, Jennifer S., Hough, Tertius, Joynson, Russell, Phelps, Hayley, Nell, Barbara, Rowe, Clare, Wood, Joe, Walling, Alison, Bopp, Nasrin, Bhomra, Amarjit, Hernandez-Pliego, Polinka, Callebert, Jacques, Aspden, Richard M., Talbot, Nick P, Robbins, Peter A, Harrison, Mark, Fray, Martin, Launay, Jean-Marie, Pinto, Yigal M., Blizard, David A., Bezzina, Connie R., Adams, David J, Franken, Paul, Weaver, Tom, Wells, Sara, Brown, Steve DM, Potter, Paul K, Klenerman, Paul, Lionikas, Arimantas, Mott, Richard, Flint, Jonathan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4966644/
https://www.ncbi.nlm.nih.gov/pubmed/27376238
http://dx.doi.org/10.1038/ng.3595
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author Nicod, Jérôme
Davies, Robert W.
Cai, Na
Hassett, Carl
Goodstadt, Leo
Cosgrove, Cormac
Yee, Benjamin K
Lionikaite, Vikte
McIntyre, Rebecca E
Remme, Carol Ann
Lodder, Elisabeth M.
Gregory, Jennifer S.
Hough, Tertius
Joynson, Russell
Phelps, Hayley
Nell, Barbara
Rowe, Clare
Wood, Joe
Walling, Alison
Bopp, Nasrin
Bhomra, Amarjit
Hernandez-Pliego, Polinka
Callebert, Jacques
Aspden, Richard M.
Talbot, Nick P
Robbins, Peter A
Harrison, Mark
Fray, Martin
Launay, Jean-Marie
Pinto, Yigal M.
Blizard, David A.
Bezzina, Connie R.
Adams, David J
Franken, Paul
Weaver, Tom
Wells, Sara
Brown, Steve DM
Potter, Paul K
Klenerman, Paul
Lionikas, Arimantas
Mott, Richard
Flint, Jonathan
author_facet Nicod, Jérôme
Davies, Robert W.
Cai, Na
Hassett, Carl
Goodstadt, Leo
Cosgrove, Cormac
Yee, Benjamin K
Lionikaite, Vikte
McIntyre, Rebecca E
Remme, Carol Ann
Lodder, Elisabeth M.
Gregory, Jennifer S.
Hough, Tertius
Joynson, Russell
Phelps, Hayley
Nell, Barbara
Rowe, Clare
Wood, Joe
Walling, Alison
Bopp, Nasrin
Bhomra, Amarjit
Hernandez-Pliego, Polinka
Callebert, Jacques
Aspden, Richard M.
Talbot, Nick P
Robbins, Peter A
Harrison, Mark
Fray, Martin
Launay, Jean-Marie
Pinto, Yigal M.
Blizard, David A.
Bezzina, Connie R.
Adams, David J
Franken, Paul
Weaver, Tom
Wells, Sara
Brown, Steve DM
Potter, Paul K
Klenerman, Paul
Lionikas, Arimantas
Mott, Richard
Flint, Jonathan
author_sort Nicod, Jérôme
collection PubMed
description Two bottlenecks impeding the genetic analysis of complex traits in rodents are access to mapping populations able to deliver gene-level mapping resolution, and the need for population specific genotyping arrays and haplotype reference panels. Here we combine low coverage sequencing (0.15X) with a novel method to impute the ancestral haplotype space in 1,887 commercially available outbred mice. We mapped 156 unique quantitative trait loci for 92 phenotypes at 5% false discovery rate. Gene-level mapping resolution was achieved at about a fifth of loci, implicating Unc13c and Pgc1-alpha at loci for the quality of sleep, Adarb2 for home cage activity, Rtkn2 for intensity of reaction to startle, Bmp2 for wound healing, Il15 and Id2 for several T-cell measures and Prkca for bone mineral content. These findings have implications for diverse areas of mammalian biology and demonstrate how GWAS can be extended via low-coverage sequencing to species with highly recombinant outbred populations.
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spelling pubmed-49666442017-01-04 Genome-wide association of multiple complex traits in outbred mice by ultra low-coverage sequencing Nicod, Jérôme Davies, Robert W. Cai, Na Hassett, Carl Goodstadt, Leo Cosgrove, Cormac Yee, Benjamin K Lionikaite, Vikte McIntyre, Rebecca E Remme, Carol Ann Lodder, Elisabeth M. Gregory, Jennifer S. Hough, Tertius Joynson, Russell Phelps, Hayley Nell, Barbara Rowe, Clare Wood, Joe Walling, Alison Bopp, Nasrin Bhomra, Amarjit Hernandez-Pliego, Polinka Callebert, Jacques Aspden, Richard M. Talbot, Nick P Robbins, Peter A Harrison, Mark Fray, Martin Launay, Jean-Marie Pinto, Yigal M. Blizard, David A. Bezzina, Connie R. Adams, David J Franken, Paul Weaver, Tom Wells, Sara Brown, Steve DM Potter, Paul K Klenerman, Paul Lionikas, Arimantas Mott, Richard Flint, Jonathan Nat Genet Article Two bottlenecks impeding the genetic analysis of complex traits in rodents are access to mapping populations able to deliver gene-level mapping resolution, and the need for population specific genotyping arrays and haplotype reference panels. Here we combine low coverage sequencing (0.15X) with a novel method to impute the ancestral haplotype space in 1,887 commercially available outbred mice. We mapped 156 unique quantitative trait loci for 92 phenotypes at 5% false discovery rate. Gene-level mapping resolution was achieved at about a fifth of loci, implicating Unc13c and Pgc1-alpha at loci for the quality of sleep, Adarb2 for home cage activity, Rtkn2 for intensity of reaction to startle, Bmp2 for wound healing, Il15 and Id2 for several T-cell measures and Prkca for bone mineral content. These findings have implications for diverse areas of mammalian biology and demonstrate how GWAS can be extended via low-coverage sequencing to species with highly recombinant outbred populations. 2016-07-04 2016-08 /pmc/articles/PMC4966644/ /pubmed/27376238 http://dx.doi.org/10.1038/ng.3595 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Nicod, Jérôme
Davies, Robert W.
Cai, Na
Hassett, Carl
Goodstadt, Leo
Cosgrove, Cormac
Yee, Benjamin K
Lionikaite, Vikte
McIntyre, Rebecca E
Remme, Carol Ann
Lodder, Elisabeth M.
Gregory, Jennifer S.
Hough, Tertius
Joynson, Russell
Phelps, Hayley
Nell, Barbara
Rowe, Clare
Wood, Joe
Walling, Alison
Bopp, Nasrin
Bhomra, Amarjit
Hernandez-Pliego, Polinka
Callebert, Jacques
Aspden, Richard M.
Talbot, Nick P
Robbins, Peter A
Harrison, Mark
Fray, Martin
Launay, Jean-Marie
Pinto, Yigal M.
Blizard, David A.
Bezzina, Connie R.
Adams, David J
Franken, Paul
Weaver, Tom
Wells, Sara
Brown, Steve DM
Potter, Paul K
Klenerman, Paul
Lionikas, Arimantas
Mott, Richard
Flint, Jonathan
Genome-wide association of multiple complex traits in outbred mice by ultra low-coverage sequencing
title Genome-wide association of multiple complex traits in outbred mice by ultra low-coverage sequencing
title_full Genome-wide association of multiple complex traits in outbred mice by ultra low-coverage sequencing
title_fullStr Genome-wide association of multiple complex traits in outbred mice by ultra low-coverage sequencing
title_full_unstemmed Genome-wide association of multiple complex traits in outbred mice by ultra low-coverage sequencing
title_short Genome-wide association of multiple complex traits in outbred mice by ultra low-coverage sequencing
title_sort genome-wide association of multiple complex traits in outbred mice by ultra low-coverage sequencing
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4966644/
https://www.ncbi.nlm.nih.gov/pubmed/27376238
http://dx.doi.org/10.1038/ng.3595
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