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Fine Mapping of a Major Backfat QTL Reveals a Causal Regulatory Variant Affecting the CCND2 Gene

Backfat is an important trait in pork production, and it has been included in the breeding objectives of genetic companies for decades. Although adipose tissue is a good energy storage, excessive fat results in reduced efficiency and economical losses. A large QTL for backfat thickness on chromosome...

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Autores principales: Oliveira, Haniel C., Derks, Martijn F. L., Lopes, Marcos S., Madsen, Ole, Harlizius, Barbara, van Son, Maren, Grindflek, Eli H., Gòdia, Marta, Gjuvsland, Arne B., Otto, Pamela Itajara, Groenen, Martien A. M., Guimaraes, Simone E. F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9180923/
https://www.ncbi.nlm.nih.gov/pubmed/35692822
http://dx.doi.org/10.3389/fgene.2022.871516
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author Oliveira, Haniel C.
Derks, Martijn F. L.
Lopes, Marcos S.
Madsen, Ole
Harlizius, Barbara
van Son, Maren
Grindflek, Eli H.
Gòdia, Marta
Gjuvsland, Arne B.
Otto, Pamela Itajara
Groenen, Martien A. M.
Guimaraes, Simone E. F.
author_facet Oliveira, Haniel C.
Derks, Martijn F. L.
Lopes, Marcos S.
Madsen, Ole
Harlizius, Barbara
van Son, Maren
Grindflek, Eli H.
Gòdia, Marta
Gjuvsland, Arne B.
Otto, Pamela Itajara
Groenen, Martien A. M.
Guimaraes, Simone E. F.
author_sort Oliveira, Haniel C.
collection PubMed
description Backfat is an important trait in pork production, and it has been included in the breeding objectives of genetic companies for decades. Although adipose tissue is a good energy storage, excessive fat results in reduced efficiency and economical losses. A large QTL for backfat thickness on chromosome 5 is still segregating in different commercial pig breeds. We fine mapped this QTL region using a genome-wide association analysis (GWAS) with 133,358 genotyped animals from five commercial populations (Landrace, Pietrain, Large White, Synthetic, and Duroc) imputed to the porcine 660K SNP chip. The lead SNP was located at 5:66103958 (G/A) within the third intron of the CCND2 gene, with the G allele associated with more backfat, while the A allele is associated with less backfat. We further phased the QTL region to discover a core haplotype of five SNPs associated with low backfat across three breeds. Linkage disequilibrium analysis using whole-genome sequence data revealed three candidate causal variants within intronic regions and downstream of the CCND2 gene, including the lead SNP. We evaluated the association of the lead SNP with the expression of the genes in the QTL region (including CCND2) in a large cohort of 100 crossbred samples, sequenced in four different tissues (lung, spleen, liver, muscle). Results show that the A allele increases the expression of CCND2 in an additive way in three out of four tissues. Our findings indicate that the causal variant for this QTL region is a regulatory variant within the third intron of the CCND2 gene affecting the expression of CCND2.
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spelling pubmed-91809232022-06-10 Fine Mapping of a Major Backfat QTL Reveals a Causal Regulatory Variant Affecting the CCND2 Gene Oliveira, Haniel C. Derks, Martijn F. L. Lopes, Marcos S. Madsen, Ole Harlizius, Barbara van Son, Maren Grindflek, Eli H. Gòdia, Marta Gjuvsland, Arne B. Otto, Pamela Itajara Groenen, Martien A. M. Guimaraes, Simone E. F. Front Genet Genetics Backfat is an important trait in pork production, and it has been included in the breeding objectives of genetic companies for decades. Although adipose tissue is a good energy storage, excessive fat results in reduced efficiency and economical losses. A large QTL for backfat thickness on chromosome 5 is still segregating in different commercial pig breeds. We fine mapped this QTL region using a genome-wide association analysis (GWAS) with 133,358 genotyped animals from five commercial populations (Landrace, Pietrain, Large White, Synthetic, and Duroc) imputed to the porcine 660K SNP chip. The lead SNP was located at 5:66103958 (G/A) within the third intron of the CCND2 gene, with the G allele associated with more backfat, while the A allele is associated with less backfat. We further phased the QTL region to discover a core haplotype of five SNPs associated with low backfat across three breeds. Linkage disequilibrium analysis using whole-genome sequence data revealed three candidate causal variants within intronic regions and downstream of the CCND2 gene, including the lead SNP. We evaluated the association of the lead SNP with the expression of the genes in the QTL region (including CCND2) in a large cohort of 100 crossbred samples, sequenced in four different tissues (lung, spleen, liver, muscle). Results show that the A allele increases the expression of CCND2 in an additive way in three out of four tissues. Our findings indicate that the causal variant for this QTL region is a regulatory variant within the third intron of the CCND2 gene affecting the expression of CCND2. Frontiers Media S.A. 2022-05-25 /pmc/articles/PMC9180923/ /pubmed/35692822 http://dx.doi.org/10.3389/fgene.2022.871516 Text en Copyright © 2022 Oliveira, Derks, Lopes, Madsen, Harlizius, van Son, Grindflek, Gòdia, Gjuvsland, Otto, Groenen and Guimaraes. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Oliveira, Haniel C.
Derks, Martijn F. L.
Lopes, Marcos S.
Madsen, Ole
Harlizius, Barbara
van Son, Maren
Grindflek, Eli H.
Gòdia, Marta
Gjuvsland, Arne B.
Otto, Pamela Itajara
Groenen, Martien A. M.
Guimaraes, Simone E. F.
Fine Mapping of a Major Backfat QTL Reveals a Causal Regulatory Variant Affecting the CCND2 Gene
title Fine Mapping of a Major Backfat QTL Reveals a Causal Regulatory Variant Affecting the CCND2 Gene
title_full Fine Mapping of a Major Backfat QTL Reveals a Causal Regulatory Variant Affecting the CCND2 Gene
title_fullStr Fine Mapping of a Major Backfat QTL Reveals a Causal Regulatory Variant Affecting the CCND2 Gene
title_full_unstemmed Fine Mapping of a Major Backfat QTL Reveals a Causal Regulatory Variant Affecting the CCND2 Gene
title_short Fine Mapping of a Major Backfat QTL Reveals a Causal Regulatory Variant Affecting the CCND2 Gene
title_sort fine mapping of a major backfat qtl reveals a causal regulatory variant affecting the ccnd2 gene
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9180923/
https://www.ncbi.nlm.nih.gov/pubmed/35692822
http://dx.doi.org/10.3389/fgene.2022.871516
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