首页> 外文期刊>Asian-Australasian Journal of Animal Sciences >Genetic models for carcass traits with different slaughter endpoints in selected Hanwoo herds I. Linear covariance models
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Genetic models for carcass traits with different slaughter endpoints in selected Hanwoo herds I. Linear covariance models

机译:不同屠宰终点中的胴体性状的遗传模型在所选汉语畜群中的不同屠宰端。线性协方差模型

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Carcass characteristics data of Hanwoo (N = 1,084) were collected from two stations of the National Livestock institute of Animal Science (NIAS). Korea and records from thirteen individual cow-calf operators were analyzed to estimate variance and covariance components and the effect of different slaughter endpoints. Carcass traits analyzed were cold carcass weight (CWT, kg), REA (rib eye area, cm(2)), back fat thickness (mm) and marbling score (1-7). Four different models were examined. All models included sex and contemporary group as Fixed effects and the animal's direct genetic potential and environment as random effects. The first model fitted a linear covariate of age at slaughter. The second model fitted both linear and quadratic covariates of age at slaughter. The third model fitted a linear covariate of body weight at slaughter. The fourth model fitted both linear covariates of age at slaughter and body weight at slaughter. Variance components were estimated using the REML procedure with Gibb's sampler. Heritability estimate of CWT was in the range of 0.08-0.11 depending on the model applied. Heritability estimates of BF, REA and MS were in the ranges of 0.23-0.28. 0.19-0.26. and 0.44-0.45, respectively. Genetic correlations between CWT and BF, between CWT and REA, and between CWT and MS were in the ranges of -0.33 - -0.14. 0.73-0.84, and -0.01-0.11. respectively. Genetic correlations between REA and BF, between MS and BF and between REA and MS were in the ranges of -0.82 similar to -0.72, 0.04 similar to 0.28 and -0.08 similar to -0.02, respectively. Variance and covariance components estimated varied by model with different slaughter endpoints. Body weight endpoint was more effective for direct selection in favor of yield traits and body weight endpoints affected more of the correlated response to selection for the traits of yield and quality of edible portion of beef.
机译:从国家畜牧科学研究所(NIAS)的两个站收集了HANWOO(n = 1,084)的胴体特征。分析了韩国和来自十三个单独的牛犊运营商的记录,以估算方差和协方差组分以及不同屠宰端点的效果。分析的胴体性状是冷胴体重量(CWT,kg),Rea(肋眼区域,cm(2)),背部脂肪厚度(mm)和大理石尺得分(1-7)。检查了四种不同的模型。所有型号都包括性别和当代组作为固定效果和动物的直接遗传潜力和环境作为随机效应。第一个模型适用于屠宰时的年龄的线性协变量。第二种模型在屠宰时拟合了年龄的线性和二次协变量。第三种模型在屠宰时拟合了体重的线性变焦。第四种模式拟合在屠宰和体重屠宰时的年龄的线性协变量。使用带有GIBB的采样器的REML过程估计方差分量。 CWT的遗传性估计值在0.08-0.11的范围内,这取决于所施加的模型。 BF,REA和MS的遗传性估计在0.23-0.28的范围内。 0.19-0.26。分别为0.44-0.45。 CWT和BF之间的遗传相关性,CWT和REA之间,CWT和MS之间的范围为-0.33-0.14。 0.73-0.84,和-0.01-0.11。分别。 Rea和Bf之间的遗传相关性,在MS和BF之间,REA和MS之间的范围为-0.82,与-0.72,0.04相似,同样与0.02相似的0.0.02。估计不同屠宰端点的模型估计的方差和协方差组分。体重终点对于直接选择有利于屈服性状,并且体重终点对对牛肉的产量和质量的特征的选择的相关响应影响更多。

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