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Combined QTL and Selective Sweep Mappings with Coding SNP Annotation and cis-eQTL Analysis Revealed PARK2 and JAG2 as New Candidate Genes for Adiposity Regulation

Very few causal genes have been identified by quantitative trait loci (QTL) mapping because of the large size of QTL, and most of them were identified thanks to functional links already known with the targeted phenotype. Here, we propose to combine selection signature detection, coding SNP annotatio...

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Autores principales: Roux, Pierre-François, Boitard, Simon, Blum, Yuna, Parks, Brian, Montagner, Alexandra, Mouisel, Etienne, Djari, Anis, Esquerré, Diane, Désert, Colette, Boutin, Morgane, Leroux, Sophie, Lecerf, Frédéric, Le Bihan-Duval, Elisabeth, Klopp, Christophe, Servin, Bertrand, Pitel, Frédérique, Duclos, Michel Jean, Guillou, Hervé, Lusis, Aldons J., Demeure, Olivier, Lagarrigue, Sandrine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4390568/
https://www.ncbi.nlm.nih.gov/pubmed/25653314
http://dx.doi.org/10.1534/g3.115.016865
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author Roux, Pierre-François
Boitard, Simon
Blum, Yuna
Parks, Brian
Montagner, Alexandra
Mouisel, Etienne
Djari, Anis
Esquerré, Diane
Désert, Colette
Boutin, Morgane
Leroux, Sophie
Lecerf, Frédéric
Le Bihan-Duval, Elisabeth
Klopp, Christophe
Servin, Bertrand
Pitel, Frédérique
Duclos, Michel Jean
Guillou, Hervé
Lusis, Aldons J.
Demeure, Olivier
Lagarrigue, Sandrine
author_facet Roux, Pierre-François
Boitard, Simon
Blum, Yuna
Parks, Brian
Montagner, Alexandra
Mouisel, Etienne
Djari, Anis
Esquerré, Diane
Désert, Colette
Boutin, Morgane
Leroux, Sophie
Lecerf, Frédéric
Le Bihan-Duval, Elisabeth
Klopp, Christophe
Servin, Bertrand
Pitel, Frédérique
Duclos, Michel Jean
Guillou, Hervé
Lusis, Aldons J.
Demeure, Olivier
Lagarrigue, Sandrine
author_sort Roux, Pierre-François
collection PubMed
description Very few causal genes have been identified by quantitative trait loci (QTL) mapping because of the large size of QTL, and most of them were identified thanks to functional links already known with the targeted phenotype. Here, we propose to combine selection signature detection, coding SNP annotation, and cis-expression QTL analyses to identify potential causal genes underlying QTL identified in divergent line designs. As a model, we chose experimental chicken lines divergently selected for only one trait, the abdominal fat weight, in which several QTL were previously mapped. Using new haplotype-based statistics exploiting the very high SNP density generated through whole-genome resequencing, we found 129 significant selective sweeps. Most of the QTL colocalized with at least one sweep, which markedly narrowed candidate region size. Some of those sweeps contained only one gene, therefore making them strong positional causal candidates with no presupposed function. We then focused on two of these QTL/sweeps. The absence of nonsynonymous SNPs in their coding regions strongly suggests the existence of causal mutations acting in cis on their expression, confirmed by cis-eQTL identification using either allele-specific expression or genetic mapping analyses. Additional expression analyses of those two genes in the chicken and mice contrasted for adiposity reinforces their link with this phenotype. This study shows for the first time the interest of combining selective sweeps mapping, coding SNP annotation and cis-eQTL analyses for identifying causative genes for a complex trait, in the context of divergent lines selected for this specific trait. Moreover, it highlights two genes, JAG2 and PARK2, as new potential negative and positive key regulators of adiposity in chicken and mice.
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spelling pubmed-43905682015-04-10 Combined QTL and Selective Sweep Mappings with Coding SNP Annotation and cis-eQTL Analysis Revealed PARK2 and JAG2 as New Candidate Genes for Adiposity Regulation Roux, Pierre-François Boitard, Simon Blum, Yuna Parks, Brian Montagner, Alexandra Mouisel, Etienne Djari, Anis Esquerré, Diane Désert, Colette Boutin, Morgane Leroux, Sophie Lecerf, Frédéric Le Bihan-Duval, Elisabeth Klopp, Christophe Servin, Bertrand Pitel, Frédérique Duclos, Michel Jean Guillou, Hervé Lusis, Aldons J. Demeure, Olivier Lagarrigue, Sandrine G3 (Bethesda) Investigations Very few causal genes have been identified by quantitative trait loci (QTL) mapping because of the large size of QTL, and most of them were identified thanks to functional links already known with the targeted phenotype. Here, we propose to combine selection signature detection, coding SNP annotation, and cis-expression QTL analyses to identify potential causal genes underlying QTL identified in divergent line designs. As a model, we chose experimental chicken lines divergently selected for only one trait, the abdominal fat weight, in which several QTL were previously mapped. Using new haplotype-based statistics exploiting the very high SNP density generated through whole-genome resequencing, we found 129 significant selective sweeps. Most of the QTL colocalized with at least one sweep, which markedly narrowed candidate region size. Some of those sweeps contained only one gene, therefore making them strong positional causal candidates with no presupposed function. We then focused on two of these QTL/sweeps. The absence of nonsynonymous SNPs in their coding regions strongly suggests the existence of causal mutations acting in cis on their expression, confirmed by cis-eQTL identification using either allele-specific expression or genetic mapping analyses. Additional expression analyses of those two genes in the chicken and mice contrasted for adiposity reinforces their link with this phenotype. This study shows for the first time the interest of combining selective sweeps mapping, coding SNP annotation and cis-eQTL analyses for identifying causative genes for a complex trait, in the context of divergent lines selected for this specific trait. Moreover, it highlights two genes, JAG2 and PARK2, as new potential negative and positive key regulators of adiposity in chicken and mice. Genetics Society of America 2015-02-03 /pmc/articles/PMC4390568/ /pubmed/25653314 http://dx.doi.org/10.1534/g3.115.016865 Text en Copyright © 2015 Roux et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Roux, Pierre-François
Boitard, Simon
Blum, Yuna
Parks, Brian
Montagner, Alexandra
Mouisel, Etienne
Djari, Anis
Esquerré, Diane
Désert, Colette
Boutin, Morgane
Leroux, Sophie
Lecerf, Frédéric
Le Bihan-Duval, Elisabeth
Klopp, Christophe
Servin, Bertrand
Pitel, Frédérique
Duclos, Michel Jean
Guillou, Hervé
Lusis, Aldons J.
Demeure, Olivier
Lagarrigue, Sandrine
Combined QTL and Selective Sweep Mappings with Coding SNP Annotation and cis-eQTL Analysis Revealed PARK2 and JAG2 as New Candidate Genes for Adiposity Regulation
title Combined QTL and Selective Sweep Mappings with Coding SNP Annotation and cis-eQTL Analysis Revealed PARK2 and JAG2 as New Candidate Genes for Adiposity Regulation
title_full Combined QTL and Selective Sweep Mappings with Coding SNP Annotation and cis-eQTL Analysis Revealed PARK2 and JAG2 as New Candidate Genes for Adiposity Regulation
title_fullStr Combined QTL and Selective Sweep Mappings with Coding SNP Annotation and cis-eQTL Analysis Revealed PARK2 and JAG2 as New Candidate Genes for Adiposity Regulation
title_full_unstemmed Combined QTL and Selective Sweep Mappings with Coding SNP Annotation and cis-eQTL Analysis Revealed PARK2 and JAG2 as New Candidate Genes for Adiposity Regulation
title_short Combined QTL and Selective Sweep Mappings with Coding SNP Annotation and cis-eQTL Analysis Revealed PARK2 and JAG2 as New Candidate Genes for Adiposity Regulation
title_sort combined qtl and selective sweep mappings with coding snp annotation and cis-eqtl analysis revealed park2 and jag2 as new candidate genes for adiposity regulation
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4390568/
https://www.ncbi.nlm.nih.gov/pubmed/25653314
http://dx.doi.org/10.1534/g3.115.016865
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