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A Missense Mutation in PPARD Causes a Major QTL Effect on Ear Size in Pigs

Chinese Erhualian is the most prolific pig breed in the world. The breed exhibits exceptionally large and floppy ears. To identify genes underlying this typical feature, we previously performed a genome scan in a large scale White Duroc × Erhualian cross and mapped a major QTL for ear size to a 2-cM...

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Autores principales: Ren, Jun, Duan, Yanyu, Qiao, Ruimin, Yao, Fei, Zhang, Zhiyan, Yang, Bin, Guo, Yuanmei, Xiao, Shijun, Wei, Rongxin, Ouyang, Zixuan, Ding, Nengshui, Ai, Huashui, Huang, Lusheng
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3088719/
https://www.ncbi.nlm.nih.gov/pubmed/21573137
http://dx.doi.org/10.1371/journal.pgen.1002043
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author Ren, Jun
Duan, Yanyu
Qiao, Ruimin
Yao, Fei
Zhang, Zhiyan
Yang, Bin
Guo, Yuanmei
Xiao, Shijun
Wei, Rongxin
Ouyang, Zixuan
Ding, Nengshui
Ai, Huashui
Huang, Lusheng
author_facet Ren, Jun
Duan, Yanyu
Qiao, Ruimin
Yao, Fei
Zhang, Zhiyan
Yang, Bin
Guo, Yuanmei
Xiao, Shijun
Wei, Rongxin
Ouyang, Zixuan
Ding, Nengshui
Ai, Huashui
Huang, Lusheng
author_sort Ren, Jun
collection PubMed
description Chinese Erhualian is the most prolific pig breed in the world. The breed exhibits exceptionally large and floppy ears. To identify genes underlying this typical feature, we previously performed a genome scan in a large scale White Duroc × Erhualian cross and mapped a major QTL for ear size to a 2-cM region on chromosome 7. We herein performed an identical-by-descent analysis that defined the QTL within a 750-kb region. Historically, the large-ear feature has been selected for the ancient sacrificial culture in Erhualian pigs. By using a selective sweep analysis, we then refined the critical region to a 630-kb interval containing 9 annotated genes. Four of the 9 genes are expressed in ear tissues of piglets. Of the 4 genes, PPARD stood out as the strongest candidate gene for its established role in skin homeostasis, cartilage development, and fat metabolism. No differential expression of PPARD was found in ear tissues at different growth stages between large-eared Erhualian and small-eared Duroc pigs. We further screened coding sequence variants in the PPARD gene and identified only one missense mutation (G32E) in a conserved functionally important domain. The protein-altering mutation showed perfect concordance (100%) with the QTL genotypes of all 19 founder animals segregating in the White Duroc × Erhualian cross and occurred at high frequencies exclusively in Chinese large-eared breeds. Moreover, the mutation is of functional significance; it mediates down-regulation of β-catenin and its target gene expression that is crucial for fat deposition in skin. Furthermore, the mutation was significantly associated with ear size across the experimental cross and diverse outbred populations. A worldwide survey of haplotype diversity revealed that the mutation event is of Chinese origin, likely after domestication. Taken together, we provide evidence that PPARD G32E is the variation underlying this major QTL.
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spelling pubmed-30887192011-05-13 A Missense Mutation in PPARD Causes a Major QTL Effect on Ear Size in Pigs Ren, Jun Duan, Yanyu Qiao, Ruimin Yao, Fei Zhang, Zhiyan Yang, Bin Guo, Yuanmei Xiao, Shijun Wei, Rongxin Ouyang, Zixuan Ding, Nengshui Ai, Huashui Huang, Lusheng PLoS Genet Research Article Chinese Erhualian is the most prolific pig breed in the world. The breed exhibits exceptionally large and floppy ears. To identify genes underlying this typical feature, we previously performed a genome scan in a large scale White Duroc × Erhualian cross and mapped a major QTL for ear size to a 2-cM region on chromosome 7. We herein performed an identical-by-descent analysis that defined the QTL within a 750-kb region. Historically, the large-ear feature has been selected for the ancient sacrificial culture in Erhualian pigs. By using a selective sweep analysis, we then refined the critical region to a 630-kb interval containing 9 annotated genes. Four of the 9 genes are expressed in ear tissues of piglets. Of the 4 genes, PPARD stood out as the strongest candidate gene for its established role in skin homeostasis, cartilage development, and fat metabolism. No differential expression of PPARD was found in ear tissues at different growth stages between large-eared Erhualian and small-eared Duroc pigs. We further screened coding sequence variants in the PPARD gene and identified only one missense mutation (G32E) in a conserved functionally important domain. The protein-altering mutation showed perfect concordance (100%) with the QTL genotypes of all 19 founder animals segregating in the White Duroc × Erhualian cross and occurred at high frequencies exclusively in Chinese large-eared breeds. Moreover, the mutation is of functional significance; it mediates down-regulation of β-catenin and its target gene expression that is crucial for fat deposition in skin. Furthermore, the mutation was significantly associated with ear size across the experimental cross and diverse outbred populations. A worldwide survey of haplotype diversity revealed that the mutation event is of Chinese origin, likely after domestication. Taken together, we provide evidence that PPARD G32E is the variation underlying this major QTL. Public Library of Science 2011-05-05 /pmc/articles/PMC3088719/ /pubmed/21573137 http://dx.doi.org/10.1371/journal.pgen.1002043 Text en Ren et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ren, Jun
Duan, Yanyu
Qiao, Ruimin
Yao, Fei
Zhang, Zhiyan
Yang, Bin
Guo, Yuanmei
Xiao, Shijun
Wei, Rongxin
Ouyang, Zixuan
Ding, Nengshui
Ai, Huashui
Huang, Lusheng
A Missense Mutation in PPARD Causes a Major QTL Effect on Ear Size in Pigs
title A Missense Mutation in PPARD Causes a Major QTL Effect on Ear Size in Pigs
title_full A Missense Mutation in PPARD Causes a Major QTL Effect on Ear Size in Pigs
title_fullStr A Missense Mutation in PPARD Causes a Major QTL Effect on Ear Size in Pigs
title_full_unstemmed A Missense Mutation in PPARD Causes a Major QTL Effect on Ear Size in Pigs
title_short A Missense Mutation in PPARD Causes a Major QTL Effect on Ear Size in Pigs
title_sort missense mutation in ppard causes a major qtl effect on ear size in pigs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3088719/
https://www.ncbi.nlm.nih.gov/pubmed/21573137
http://dx.doi.org/10.1371/journal.pgen.1002043
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