Whole-genome resequencing of major populations revealed domestication-related genes in yaks

Author:

Peng Wei,Fu Changqi,Shu Shi,Wang Guowen,Wang Hui,Yue Binglin,Zhang Ming,Liu Xinrui,Liu Yaxin,Zhang Jun,Zhong Jincheng,Wang Jiabo

Abstract

Abstract Background The yak is a symbol of the Qinghai-Tibet Plateau and provides important basic resources for human life on the plateau. Domestic yaks have been subjected to strong artificial selection and environmental pressures over the long-term. Understanding the molecular mechanisms of phenotypic differences in yak populations can reveal key functional genes involved in the domestication process and improve genetic breeding. Material and method Here, we re-sequenced 80 yaks (Maiwa, Yushu, and Huanhu populations) to identify single-nucleotide polymorphisms (SNPs) as genetic variants. After filtering and quality control, remaining SNPs were kept to identify the genome-wide regions of selective sweeps associated with domestic traits. The four methods (π, XPEHH, iHS, and XP-nSL) were used to detect the population genetic separation. Results By comparing the differences in the population stratification, linkage disequilibrium decay rate, and characteristic selective sweep signals, we identified 203 putative selective regions of domestic traits, 45 of which were mapped to 27 known genes. They were clustered into 4 major GO biological process terms. All known genes were associated with seven major domestication traits, such as dwarfism (ANKRD28), milk (HECW1, HECW2, and OSBPL2), meat (SPATA5 and GRHL2), fertility (BTBD11 and ARFIP1), adaptation (NCKAP5, ANTXR1, LAMA5, OSBPL2, AOC2, and RYR2), growth (GRHL2, GRID2, SMARCAL1, and EPHB2), and the immune system (INPP5D and ADCYAP1R1). Conclusions We provided there is an obvious genetic different among domestic progress in these three yak populations. Our findings improve the understanding of the major genetic switches and domestic processes among yak populations.

Funder

the Qinghai Science and Technology Program

Program of Chinese National Beef Cattle and Yak Industrial Technology System

National Key Research and Development Program of China

Heilongjiang Province Key Research and Development Project

Fundamental Research Funds for the Central Universities

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Biotechnology

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