Genome-Wide Association Study for Somatic Skeletal Traits in Duroc × (Landrace × Yorkshire) Pigs

The pig bone weight trait holds significant economic importance in southern China. To expedite the selection of the pig bone weight trait in pig breeding, we conducted molecular genetic research on these specific traits. These traits encompass the bone weight of the scapula (SW), front leg bone weig...

Full description

Bibliographic Details
Main Authors: Xin Gao, Shenping Zhou, Zhihong Liu, Donglin Ruan, Jie Wu, Jianping Quan, Enqin Zheng, Jie Yang, Gengyuan Cai, Zhenfang Wu, Ming Yang
Format: Article
Language:English
Published: MDPI AG 2023-12-01
Series:Animals
Subjects:
Online Access:https://www.mdpi.com/2076-2615/14/1/37
Description
Summary:The pig bone weight trait holds significant economic importance in southern China. To expedite the selection of the pig bone weight trait in pig breeding, we conducted molecular genetic research on these specific traits. These traits encompass the bone weight of the scapula (SW), front leg bone weight (including humerus and ulna) (FLBW), hind leg bone weight (including femur and tibia) (HLBW), and spine bone weight (SBW). Up until now, the genetic structure related to these traits has not been thoroughly explored, primarily due to challenges associated with obtaining the phenotype data. In this study, we utilized genome-wide association studies (GWAS) to discern single nucleotide polymorphisms (SNPs) and genes associated with four bone weight traits within a population comprising 571 Duroc × (Landrace × Yorkshire) hybrid pigs (DLY). In the analyses, we employed a mixed linear model, and for the correction of multiple tests, both the false discovery rate and Bonferroni methods were utilized. Following functional annotation, candidate genes were identified based on their proximity to the candidate sites and their association with the bone weight traits. This study represents the inaugural application of GWAS for the identification of SNPs associated with individual bone weight in DLY pigs. Our analysis unveiled 26 SNPs and identified 12 promising candidate genes (<i>OPRM1</i>, <i>SLC44A5</i>, <i>WASHC4</i>, <i>NOPCHAP1</i>, <i>RHOT1</i>, <i>GLP1R</i>, <i>TGFB3</i>, <i>PLCB1</i>, <i>TLR4</i>, <i>KCNJ2</i>, <i>ABCA6</i>, and <i>ABCA9</i>) associated with the four bone weight traits. Furthermore, our findings on the genetic mechanisms influencing pig bone weight offer valuable insights as a reference for the genetic enhancement of pig bone traits.
ISSN:2076-2615