Whole-Genome Resequencing Revealed Selective Signatures for Growth Traits in Hu and Gangba Sheep
Author:
Yang Peifu1, Shang Mingyu1ORCID, Bao Jingjing1, Liu Tianyi1, Xiong Jinke1, Huang Jupeng1, Sun Jinghua1, Zhang Li1ORCID
Affiliation:
1. Institute of Animal Science, Chinese Academy of Agricultural Sciences (CAAS), Beijing 100193, China
Abstract
A genomic study was conducted to uncover the selection signatures in sheep that show extremely significant differences in growth traits under the same breed, age in months, nutrition level, and management practices. Hu sheep from Gansu Province and Gangba sheep from the Tibet Autonomous Region in China were selected. We collected whole-genome data from 40 sheep individuals (24 Hu sheep and 16 Gangba sheep), through whole-genome sequencing. Selection signals were analyzed using parameters such as FST, π ratio, and Tajima’s D. We have identified several candidate genes that have undergone strong selection, particularly those associated with growth traits. Specifically, five growth-related genes were identified in both the Hu sheep group (HDAC1, MYH7B, LCK, ACVR1, GNAI2) and the Gangba sheep group (RBBP8, ACSL3, FBXW11, PLAT, CRB1). Additionally, in a genomic region strongly selected in both the Hu and Gangba sheep groups (Chr 22: 51,425,001-51,500,000), the growth-associated gene CYP2E1 was identified, further highlighting the genetic factors influencing growth characteristics in these breeds. This study analyzes the genetic basis for significant differences in sheep phenotypes, identifies candidate genes related to sheep growth traits, lays the foundation for molecular genetic breeding in sheep, and accelerates the genetic improvement in livestock.
Funder
Xinjiang Uygur Autonomous Region "Tianchi Talents" introduction project Government Procurement of services “Assume Leadership” Project of Inner Mongolia Autonomous Region
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