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Genetic Analysis of Milk Production Traits and Mid-Infrared Spectra in Chinese Holstein Population

机译:中国荷斯坦奶牛产奶性状和中红外光谱的遗传分析

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摘要

Usually, spectral data are used as predictors to predict milk components, animal characteristics, and even reproductive status. Another innovative way to use spectral data involves considering spectral wavenumbers as traits and then analyzing from the genetic perspective. In this study, we considered milk spectral data directly as traits, then detected the influence of some non-genetic factors on spectral wavenumbers and estimated the genetic parameters of spectral points. The result of the present study could be used as a management tool for dairy farm and also provides a further understanding of genetic background of milk mid-infrared (MIR) spectra. In future, milk spectral data could be applied more effective. For example, some sub-clinical diseases might be detected based on the difference between the expected and observed values of the spectral traits. In addition, we could also use genetic correlation between wavenumbers and a trait of interest, which are difficult and expensive to measure, to apply for the genetic improvement of dairy species.
机译:通常,光谱数据被用作预测牛奶成分,动物特征,甚至生殖状况的预测因子。使用光谱数据的另一种创新方法涉及将光谱波数视为特征,然后从遗传角度进行分析。在这项研究中,我们直接将牛奶光谱数据视为特征,然后检测一些非遗传因素对光谱波数的影响,并估计光谱点的遗传参数。本研究的结果可以用作奶牛场的管理工具,还可以进一步了解牛奶中红外(MIR)光谱的遗传背景。将来,牛奶光谱数据可能会更有效地应用。例如,可能会根据光谱特征的预期值与观察值之间的差异来检测某些亚临床疾病。另外,我们还可以利用波数与感兴趣的性状之间的遗传相关性来衡量乳品种类的遗传改良,这些相关性很难测量且昂贵。

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