Integration of multi-omics data reveals cis-regulatory variants that are associated with phenotypic differentiation of eastern from western pigs

Author:

Liu Yuwen,Fu Yang,Yang Yalan,Yi Guoqiang,Lian Jinmin,Xie Bingkun,Yao Yilong,Chen Muya,Niu Yongchao,Liu Lei,Wang Liyuan,Zhang Yongsheng,Fan Xinhao,Tang Yijie,Yuan Pengxiang,Zhu Min,Li Qiaowei,Zhang Song,Chen Yun,Wang Binhu,He Jieyu,Lu Dan,Liachko Ivan,Sullivan Shawn T.,Pang Bin,Chen Yaoqing,He Xin,Li Kui,Tang Zhonglin

Abstract

Abstract Background The genetic mechanisms that underlie phenotypic differentiation in breeding animals have important implications in evolutionary biology and agriculture. However, the contribution of cis-regulatory variants to pig phenotypes is poorly understood. Therefore, our aim was to elucidate the molecular mechanisms by which non-coding variants cause phenotypic differences in pigs by combining evolutionary biology analyses and functional genomics. Results We obtained a high-resolution phased chromosome-scale reference genome with a contig N50 of 18.03 Mb for the Luchuan pig breed (a representative eastern breed) and profiled potential selective sweeps in eastern and western pigs by resequencing the genomes of 234 pigs. Multi-tissue transcriptome and chromatin accessibility analyses of these regions suggest that tissue-specific selection pressure is mediated by promoters and distal cis-regulatory elements. Promoter variants that are associated with increased expression of the lysozyme (LYZ) gene in the small intestine might enhance the immunity of the gastrointestinal tract and roughage tolerance in pigs. In skeletal muscle, an enhancer-modulating single-nucleotide polymorphism that is associated with up-regulation of the expression of the troponin C1, slow skeletal and cardiac type (TNNC1) gene might increase the proportion of slow muscle fibers and affect meat quality. Conclusions Our work sheds light on the molecular mechanisms by which non-coding variants shape phenotypic differences in pigs and provides valuable resources and novel perspectives to dissect the role of gene regulatory evolution in animal domestication and breeding.

Funder

National Natural Science Foundation of China

the Basic and Applied Basic Research Foundation of Guangdong province

the Key R&D Programs of Guangdong Province

the Shenzhen Science and Technology Innovation Commission

the Agricultural Science and Technology Innovation Program

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Animal Science and Zoology,General Medicine,Ecology, Evolution, Behavior and Systematics

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