Genome‐wide association studies for additive and dominance effects for body composition traits in commercial crossbred Piétrain pigs

数量性状位点 生物 杂交 遗传建筑学 单核苷酸多态性 全基因组关联研究 遗传关联 遗传学 候选基因 优势(遗传学) 全基因组测序 关联映射 基因 SNP公司 基因组 基因型
作者
Marzieh Heidaritabar,M.C.A.M. Bink,Elda Dervishi,Patrick Charagu,Abe Huisman,Graham Plastow
出处
期刊:Journal of Animal Breeding and Genetics [Wiley]
卷期号:140 (4): 413-430 被引量:1
标识
DOI:10.1111/jbg.12768
摘要

Abstract Fat depth (FD) and muscle depth (MD) are economically important traits and used to estimate carcass lean content (LMP), which is one of the main breeding objectives in pig breeding programmes. We assessed the genetic architectures of body composition traits for additive and dominance effects in commercial crossbred Piétrain pigs using both 50 K array and sequence genotypes. We first performed a genome‐wide association study (GWAS) using single‐marker association analysis with a false discovery rate of 0.1. Then, we estimated the additive and dominance effects of the most significant variant in the quantitative trait loci (QTL) regions. It was investigated whether the use of whole‐genome sequence (WGS) will improve the QTL detection (both additive and dominance) with a higher power compared with lower density SNP arrays. Our results showed that more QTL regions were detected by WGS compared with 50 K array ( n = 54 vs. n = 17). Of the novel associated regions associated with FD and LMP and detected by WGS, the most pronounced peak was on SSC13, situated at ~116–118, 121–127 and 129–134 Mbp. Additionally, we found that only additive effects contributed to the genetic architecture of the analysed traits and no significant dominance effects were found for the tested SNPs at QTL regions, regardless of panel density. The associated SNPs are located in or near several relevant candidate genes. Of these genes, GABRR2, GALR1, RNGTT, CDH20 and MC4R have been previously reported as being associated with fat deposition traits. However, the genes on SSC1 ( ZNF292, ORC3, CNR1, SRSF12, MDN1, TSHZ1, RELCH and RNF152 ) and SSC18 ( TTC26 and KIAA1549 ) have not been reported previously to our best knowledge. Our current findings provide insights into the genomic regions influencing composition traits in Piétrain pigs.

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