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A novel SNP of MYO1A gene associated with heat-tolerance in Chinese cattle
Animal Biotechnology ( IF 3.7 ) Pub Date : 2020-11-04 , DOI: 10.1080/10495398.2020.1837147
Yanhong Cao 1, 2 , Peng Jia 1 , Zhuyue Wu 2 , Mingguang Huang 2 , Shaomei Chen 2 , Jicai Zhang 3 , Bizhi Huang 3 , Chuzhao Lei 1
Affiliation  

Abstract

With the advent of global climate change, heat-tolerance is becoming more and more important to the sustainability of animal husbandry production systems. Previous studies have shown that MYO1A gene associated with pigmentation may be closely related to heat-tolerance in cattle. In this study, a novel missense mutation (NC_037332.1 g.56390345 A > G) was first detected in MYO1A in 891 individuals of 35 cattle breeds, which transformed the amino acid isoleucine into valine. The purpose of this study was to determine the allele frequencies distribution of this locus in Chinese indigenous cattle and to analyze the relationship between this locus and heat-tolerance. Further analysis showed that frequency of wild allele A decreased gradually from northern cattle to southern cattle, whereas frequency of mutant type allele G showed the opposite pattern, which was consistent with the distribution of various climatic conditions of China. Additionally, association analysis was carried out between genotypes and four climatic conditions (annual mean temperature (T), relative humidity (H), temperature-humidity index (THI) and average annual sunshine hours (100-cloudiness) (SR)). Analysis results showed that genotypes were significantly correlated with climatic conditions. Therefore, our results suggest that the novel SNP (rs209559414) is related to heat-tolerance trait of Chinese indigenous cattle.

更新日期:2020-11-04
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