Key Laboratory of Animal Genetics, Breeding and Reproduction, Ministry of Education, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan, Hubei 430070, China.
Department of Animal Science, Sari Agricultural Sciences and Natural Resources University, Sari, Mazandaran, Iran.
Biomed Res Int. 2021 Mar 18;2021:3653157. doi: 10.1155/2021/3653157. eCollection 2021.
gene plays an important role in the activation of various important hormone receptors and transcriptional factors involved in the regulation of adaptive thermogenesis, gluconeogenesis, fiber-type switching in skeletal muscle, mitochondrial biogenesis, and adipogenesis, regulating the reproduction and proposed as a candidate gene for milk-related traits in cattle. This study identified polymorphisms in the gene in Italian Mediterranean buffaloes and their associations to milk production and quality traits (lactation length, peak milk yield, fat and protein yield, and percentage). As a result, a total of seven SNPs (g.-78A>G, g.224651G>C, g.286986G>A, g.304050G>A, g.325647G>A, g.325817T>C, and g.325997G>A) were identified by DNA pooled sequencing. Analysis of productivity traits within the genotyped animals revealed that the g.286986G>A located at intron 4 was associated with milk production traits, but the g.325817T>C had no association with milk production. Polymorphisms in g.-78A>G was associated with peak milk yield and milk yield, while g.304050G>A and g.325997 G>A were associated with both milk yield and protein percentage. Our findings suggest that polymorphisms in the buffalo gene are associated with milk production traits and can be used as a candidate gene for milk traits and marker-assisted selection in the buffalo breeding program.
基因在调节适应性产热、糖异生、骨骼肌纤维类型转换、线粒体生物发生和脂肪生成的各种重要激素受体和转录因子的激活中发挥重要作用,调节繁殖,并被提议作为牛乳相关性状的候选基因。本研究在意大利地中海水牛中鉴定了 基因的多态性及其与产奶量和质量性状(泌乳期、产奶高峰、脂肪和蛋白质产量以及百分比)的关联。结果,通过 DNA 池测序总共鉴定了 7 个 SNPs(g.-78A>G、g.224651G>C、g.286986G>A、g.304050G>A、g.325647G>A、g.325817T>C 和 g.325997G>A)。对基因型动物的生产力性状进行分析表明,位于内含子 4 的 g.286986G>A 与产奶量性状相关,而 g.325817T>C 与产奶量无关。g.-78A>G 的多态性与产奶高峰和产奶量相关,而 g.304050G>A 和 g.325997 G>A 与产奶量和蛋白质百分比均相关。我们的研究结果表明,水牛 基因的多态性与产奶量性状相关,可作为水牛育种计划中乳性状和标记辅助选择的候选基因。