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Effects of GHR gene polymorphisms on growth and carcass traits in Zebu and crossbred beef cattle

机译:GHR基因多态性对肉牛和杂种肉牛生长和car体性状的影响

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The growth hormone receptor (GHR) is the cell surface receptor for growth hormone (GH) and is required for GH to carry out its effects on target tissues. The objectives of the present study were to estimate the allele and genotype frequencies of the GHR/Alu I gene polymorphism located in the regulatory region in beef cattle belonging to different genetic groups and to determine associations between this polymorphism and growth and carcass traits. Genotyping was performed on 384 animals, including 79Nellore (Zebu), 30 Canchim (5/8 Charolais+3/8 Zebu), 30 Simmental x Nellore crossbred and 245 Angus x Nellore crossbred cattle. Alleles Alu I(+), Alu I(-) and Alu I(N)-null allele-were evidenced for the GHR/Alu I polymorphism and the frequency of the AluI(N) allele was significantly higher than the frequency of the Alu I(+) and Alu I(—) alleles in all genetic groups. Genotype Alu I(N/N) of the GHR/Alu I predominated in Nellore animals, while the Alu I(N/+) and Alu I(N/—) predominated in the other genetic groups. In the association studies, traits of interest were analyzed using the General Linear Model (GLM) procedure of the S AS program and least squares means of the genotypes were compared by the Tukey test. Significant associations ( P < 0.05) were observed between the Alu I(N/N) genotype of the GHR/Alu 1 polymorphism and lower weight gain and body weight at slaughter, although a confounding between genotypes and genetic groups may have occurred.
机译:生长激素受体(GHR)是生长激素(GH)的细胞表面受体,是GH在靶组织上发挥作用所必需的。本研究的目的是评估位于不同遗传群体的肉牛调节区中GHR / Alu I基因多态性的等位基因和基因型频率,并确定该多态性与生长和car体性状之间的关联。对384只动物进行基因分型,包括79头Nellore(Zebu),30头Chimim(5/8 Charolais + 3/8 Zebu),30头西门塔尔牛(Simmental x Nellore)杂种和245头安格斯(Angus x Nellore)杂交牛。等位基因Alu I(+),Alu I(-)和Alu I(N)无效等位基因被证明具有GHR / Alu I多态性,并且AluI(N)等位基因的频率显着高于Alu的频率所有基因组中的I(+)和Alu I(-)等位基因。 GHR / Alu I的基因型Alu I(N / N)在Nellore动物中占主导地位,而Alu I(N / +)和Alu I(N /-)在其他基因组中占主导地位。在关联研究中,使用S AS程序的通用线性模型(GLM)程序分析了感兴趣的性状,并通过Tukey检验比较了基因型的最小二乘法。尽管基因型和遗传群体之间可能发生混淆,但观察到GHR / Alu 1多态性的Alu I(N / N)基因型与较低的体重增加和体重显着相关(P <0.05)。

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