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韩牛阉牛活体测量与牛肉可切割性性状之间的遗传相关性。

Genetic correlation between live body measurements and beef cutability traits in Hanwoo steers.

作者信息

Choy Yun Ho, Lee Jae Goo, Mahboob Alam, Choi Tae Jeong, Rho Seung Hee

机构信息

Division of Animal Breeding & Genetics, National Institute of Animal Science, Cheonan 31000, Korea.

Hanwoo Improvement Center, National Agricultural Cooperative Federation, Seosan 31948, Korea.

出版信息

Asian-Australas J Anim Sci. 2017 Aug;30(8):1074-1080. doi: 10.5713/ajas.16.0692. Epub 2017 Mar 21.

Abstract

OBJECTIVE

The growth, carcass and retail cut yield records on 1,428 Hanwoo steers obtained through progeny testing were analyzed in this study, and their heritability and genetic relationships among the traits were estimated using animal models.

METHODS

Two different models were compared in this study. Each model was fitted for different fixed class effects, date of slaughter for carcass traits and batch of progeny test live measurement traits, and a choice of covariates (carcass weight in Model 1 or backfat thickness in Model 2) for carcass traits.

RESULTS

The differences in body composition among individuals were deemed being unaffected by their age at slaughter, except for carcass weight and backfat thickness. Heritability estimates of body size measurements were 0.21 to 0.36. Heritability estimates of retail cut percentage were high (0.56 from Model 1 and 0.47 from Model 2). And the heritability estimates for loin muscle percentage were 0.36 from Model 1 and 0.42 from Model 2, which were high enough to consider direct selection on carcass cutability traits as effective. The genetic correlations between body size measurements and retail cut ratio (RCR) were close to zero. But, some negative genetic correlations were found with chest girths measured at yearling (Model 1) or at 24 months of age or with chest widths. Loin muscle ratio (LMR) was genetically negatively correlated with body weights or body size measurements, in general in Model 1. These relationships were low close to zero but positive in Model 2. Phenotypic correlation between cutability traits (RCR, LMR) and live body size measurements were moderate and negative in Model 1 while those in Model 2 were all close to zero.

CONCLUSION

Therefore, the body weights or linear body measurements at an earlier age may not be the most desirable selection traits for exploitation of correlated responses to improve loin muscle or lean meat yield.

摘要

目的

本研究分析了通过后裔测定获得的1428头韩牛阉牛的生长、胴体和零售切块产量记录,并使用动物模型估计了这些性状的遗传力和性状间的遗传关系。

方法

本研究比较了两种不同的模型。每个模型针对不同的固定分类效应、胴体性状的屠宰日期和后裔测定活体测量性状的批次进行拟合,并且针对胴体性状选择了协变量(模型1中的胴体重或模型2中的背膘厚度)。

结果

除胴体重和背膘厚度外,个体间身体组成的差异被认为不受屠宰年龄的影响。体型测量的遗传力估计值为0.21至0.36。零售切块百分比的遗传力估计值较高(模型1为0.5,6,模型2为0.47)。模型1中腰肉百分比的遗传力估计值为0.36,模型2为0.42,高到足以认为对胴体可切割性性状进行直接选择是有效的。体型测量与零售切块率(RCR)之间的遗传相关性接近于零。但是,发现与一岁时(模型1)或24月龄时测量的胸围或胸宽存在一些负遗传相关性。一般在模型1中,腰肉率(LMR)与体重或体型测量呈遗传负相关。这些关系在模型2中较低接近于零但为正相关。模型1中可切割性性状(RCR、LMR)与活体体型测量之间的表型相关性为中等且为负相关而模型2中的相关性均接近于零。

结论

因此,较早年龄的体重或线性身体测量可能不是利用相关反应来提高腰肉或瘦肉产量的最理想选择性状。

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