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Genetic analysis of carcass traits of steers adjusted to age, weight, or fat thickness slaughter endpoints

机译:根据年龄,体重或脂肪厚度屠宰终点调整阉鸡胴体性状的遗传分析

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摘要

Carcass measurements from 1,664 steers from the Germ Plasm Utilization project at U.S. Meat Animal Research Center were used to estimate heritabilities (h2) of, and genetic correlations (rg) among, 14 carcass traits adjusted to different endpoints (age, carcass weight, and fat thickness): HCW (kg), dressing percent (DP), adjusted fat thickness (AFT, cm), LM area (LMA, cm2), KPH (%), marbling score (MS), yield grade (YG), predicted percentage of retail product (PRP), retail product weight (RPW, kg), fat weight (FW, kg), bone weight (BNW, kg), actual percentage retail product (RPP), fat percent (FP), and bone percent. Fixed effects in the model included breed group, feed energy level, dam age, birth year, significant (P \u3c 0.05) interactions, covariate for days on feed, and the appropriate covariate for endpoint nested (except age) within breed group. Random effects in the model were additive genetic effect of animal and total maternal effect of dam. Parameters were estimated by REML. For some traits, estimates of h2 and phenotypic variance changed with different endpoints. Estimates of h2 for HCW,DP, RPW, and BNW at constant age, weight, or fat thickness were 0.27, —, and 0.41; 0.19, 0.26, and 0.18; 0.42, 0.32, and 0.50; and 0.43, 0.32, and 0.48, respectively. Magnitude and/or sign of rg also changed across endpoints for 54 of the 91 trait pairs. Estimates for HCW-LMA, AFTRPW, LMA-YG, LMA-PRP, LMA-FW, LMA-RPP, and LMA-FP at constant age, weight, or fat thickness were 0.32, —, and 0.51; −0.26, −0.77, and —; −0.71, −0.89, and −0.66; 0.68, 0.85, and 0.63; −0.16, −0.51, and 0.22; 0.47, 0.57, and 0.27; and −0.44, −0.43, and −0.18, respectively. Fat thickness was highly correlated with YG (0.86 and 0.85 for common age and weight) and PRP (−0.85 and −0.82 for common age and weight), indicating that selection for decreased fat thickness would improve YG and PRP. Carcass quality, however, would be affected negatively because of moderate rg (0.34 and 0.35 for common age and weight) between MS and AFT. Estimates of h2 and phenotypic variance indicate that enough genetic variation exists to change measures of carcass merit by direct selection. For some carcass traits, however, magnitude of change would depend on effect of endpoint on h2 and phenotypic variance. Correlated responses to selection would differ depending on endpoint.
机译:美国肉类动物研究中心的“胚芽血浆利用”项目的1,664头ers牛的measurements体测量值用于估算针对不同终点(年龄,car体重量和脂肪)调整的14种car体性状的遗传力(h2)和遗传相关性(rg)。厚度):HCW(公斤),敷料百分比(DP),调整后的脂肪厚度(AFT,cm),LM面积(LMA,cm2),KPH(%),大理石花纹分数(MS),产量等级(YG),预测百分比零售产品(PRP),零售产品重量(RPW,kg),脂肪重量(FW,kg),骨骼重量(BNW,kg),零售产品的实际百分比(RPP),脂肪百分比(FP)和骨骼百分比。模型中的固定效应包括品种组,饲料能量水平,坝龄,出生年,显着(P <0.05)相互作用,饲料天数的协变量以及品种组内终点嵌套的适当协变量(年龄除外)。该模型中的随机效应是动物的遗传附加效应和水坝的总体母体效应。通过REML估计参数。对于某些性状,h2和表型方差的估计值随不同的终点而变化。在年龄,体重或脂肪厚度不变的情况下,HCW,DP,RPW和BNW的h2估计值分别为0.27,-和0.41; 0.19、0.26和0.18; 0.42、0.32和0.50;和0.43、0.32和0.48。 91个特征对中的54个的端点的rg大小和/或符号也发生了变化。在恒定的年龄,体重或脂肪厚度下,HCW-LMA,AFTRPW,LMA-YG,LMA-PRP,LMA-FW,LMA-RPP和LMA-FP的估计值为0.32,-和0.51; −0.26,−0.77和—; -0.71,-0.89和-0.66; 0.68、0.85和0.63; -0.16,-0.51和0.22; 0.47、0.57和0.27;和-0.44,-0.43和-0.18。脂肪厚度与YG(普通年龄和体重的0.86和0.85)和PRP(普通年龄和体重的-0.85和-0.82)高度相关,表明减少脂肪厚度的选择将改善YG和PRP。然而,由于MS和AFT之间的中度rg(普通年龄和体重,分别为0.34和0.35),体质量会受到负面影响。 h2和表型方差的估计表明,存在足够的遗传变异,可以通过直接选择来改变car体价值的度量。但是,对于某些car体性状,变化幅度取决于终点对h2和表型方差的影响。对选择的相关响应将根据端点而有所不同。

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