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奶牛自动挤奶系统记录的乳房形态性状的遗传分析。

Genetic analysis of udder conformation traits derived from automatic milking system recording in dairy cows.

机构信息

Wageningen University & Research Animal Breeding and Genomics, PO Box 338, 6700 AH Wageningen, the Netherlands.

Wageningen University & Research Animal Breeding and Genomics, PO Box 338, 6700 AH Wageningen, the Netherlands.

出版信息

J Dairy Sci. 2019 Feb;102(2):1386-1396. doi: 10.3168/jds.2018-14838. Epub 2019 Jan 5.

Abstract

Cartesian teat coordinates measured by automatic milking systems (AMS) provide new opportunities to record udder conformation traits and to study changes in udder conformation genetically and phenotypically within and between parities. The objective of this study was to estimate heritabilities and repeatabilities of AMS-based udder conformation traits within parities, to estimate genetic correlations between parities for AMS-based udder conformation traits, and to estimate genetic correlations between AMS-based udder conformation traits and classifier-based udder conformation traits, longevity, and udder health. Data from 70 herds, including 12,663 first-parity cows, 10,206 second-parity cows, and 7,627 third-parity cows, were analyzed using univariate and bivariate mixed animal models. Heritabilities of the AMS udder conformation traits were large (0.37-0.67) and genetic correlations between the AMS udder conformation traits and classifier-based traits were strong (>0.91). Repeatabilities within parities were large as well (0.89-0.97), indicating that a single record on udder conformation per lactation reflects udder conformation well. Genetic correlations of AMS udder conformation traits between parities were strong (0.88-1.00) and were stronger than the permanent environmental correlations. This shows that udder conformation changes over parities, but this change is mostly due to nongenetic factors. Based on these results, the current herd classification system, where cows are scored on udder conformation once in first parity, is sufficient. The AMS udder conformation traits as defined in this study have limited value as replacement for classifier-based udder conformation traits because they have smaller genetic correlations with functional traits than classifier-based traits. In summary, udder conformation hardly changes genetically between parities and is highly repeatable within parities. Udder conformation traits based on AMS need fine-tuning before they can replace classifier-based traits, and AMS teat coordinates probably contain additional information about udder health that is yet to be explored.

摘要

自动挤奶系统(AMS)测量的笛卡尔奶头坐标为记录乳房形态特征提供了新的机会,并在个体内和个体间的胎次中从遗传和表型上研究乳房形态特征的变化。本研究的目的是估计胎次内基于 AMS 的乳房形态特征的遗传力和可重复性,估计胎次间基于 AMS 的乳房形态特征的遗传相关性,以及估计基于 AMS 的乳房形态特征与基于分类器的乳房形态特征、寿命和乳房健康的遗传相关性。使用单变量和双变量混合动物模型分析了来自 70 个牛群的数据,包括 12663 头初产奶牛、10206 头经产奶牛和 7627 头三产奶牛。AMS 乳房形态特征的遗传力很大(0.37-0.67),AMS 乳房形态特征与基于分类器的特征之间的遗传相关性很强(>0.91)。胎次内的可重复性也很大(0.89-0.97),表明每次泌乳时对乳房形态的单一记录都能很好地反映乳房形态。胎次间 AMS 乳房形态特征的遗传相关性很强(0.88-1.00),并且强于永久环境相关性。这表明乳房形态在胎次间发生变化,但这种变化主要归因于非遗传因素。基于这些结果,当前的牛群分类系统,即奶牛在初产时对乳房形态进行一次评分,已经足够了。本研究中定义的 AMS 乳房形态特征作为替代基于分类器的乳房形态特征的价值有限,因为它们与功能特征的遗传相关性比基于分类器的特征小。总之,乳房形态在胎次间几乎没有遗传变化,在胎次内具有高度的可重复性。基于 AMS 的乳房形态特征需要进一步调整,才能替代基于分类器的特征,并且 AMS 奶头坐标可能包含关于乳房健康的其他信息,这些信息有待进一步探索。

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