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Genetic parameters across lactation for feed intake, fat-and protein-corrected milk, and liveweight in first-parity Holstein cattle

机译:哺乳期的遗传参数,用于第一胎的荷斯坦牛的采食量,脂肪和蛋白质校正的牛奶以及活重

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摘要

Breeding values for dry matter intake (DMI) are important to optimize dairy cattle breeding goals for feed efficiency. However, generally, only small data sets are available for feed intake, due to the cost and difficulty of measuring DMI, which makes understanding the genetic associations between traits across lactation difficult, let alone the possibility for selection of breeding animals. However, estimating national breeding values through cheaper and more easily measured correlated traits, such as milk yield and liveweight (LW), could be a first step to predict DMI. Combining DMI data across historical nutritional experiments might help to expand the data sets. Therefore, the objective was to estimate genetic parameters for DMI, fat- and protein-corrected milk (FPCM) yield, and LW across the entire first lactation using a relatively large data set combining experimental data across the Netherlands. A total of 30,483 weekly records for DMI, 49,977 for FPCM yield, and 31,956 for LW were available from 2,283 Dutch Holstein-Friesian first-parity cows between 1990 and 2011. Heritabilities, covariance components, and genetic correlations were estimated using a multivari-ate random regression model. The model included an effect for year-season of calving, and polynomials for age of cow at calving and days in milk (DIM). The random effects were experimental treatment, year-month of measurement, and the additive genetic, permanent environmental, and residual term. Additive genetic and permanent environmental effects were modeled using a third-order orthogonal polynomial. Estimated heritabilities ranged from 0.21 to 0.40 for DMI, from 0.20 to 0.43 for FPCM yield, and from 0.25 to 0.48 for LW across DIM. Genetic correlations between DMI at different DIM were relatively low during early and late lactation, compared with mid lactation. The genetic correlations between DMI and FPCM yield varied across DIM. This correlation was negative (up to -0.5) between FPCM yield in early lactation and DMI across the entire lactation, but highly positive (above 0.8) when both traits were in mid lactation. The correlation between DMI and LW was 0.6 during early lactation, but decreased to 0.4 during mid lactation. The highest correlations between FPCM yield and LW (0.3-0.5) were estimated during mid lactation. However, the genetic correlations between DMI and either FPCM yield or LW were not symmetric across DIM, and differed depending on which trait was measured first. The results of our study are useful to understand the genetic relationship of DMI, FPCM yield, and LW on specific days across lactation.
机译:干物质摄入量(DMI)的育种值对于优化奶牛育种目标以提高饲料效率非常重要。但是,由于测量DMI的成本和难度,通常只有很少的数据集可用于采食,这使得了解整个泌乳性状之间的遗传关联变得困难,更不用说选择繁殖动物了。但是,通过更便宜,更容易测量的相关性状(例如产奶量和活重(LW))估算国家育种价值可能是预测DMI的第一步。结合历史营养实验中的DMI数据可能有助于扩展数据集。因此,目的是使用结合整个荷兰的实验数据的相对较大的数据集,估算整个第一次哺乳期的DMI,经脂肪和蛋白质校正的牛奶(FPCM)产量和LW的遗传参数。在1990年至2011年之间,共有2283头荷兰荷斯坦-弗里斯兰一胎一头母牛获得了DMI的每周30483记录,FPCM产量的49977和LW的每周31956。遗传力,协方差成分和遗传相关性均采用多元估计随机回归模型。该模型包括产犊季节的影响,以及产犊和奶天数(DIM)的母牛年龄多项式。随机效应是实验性处理,一年的测量以及附加的遗传,永久环境和剩余期限。使用三阶正交多项式对加性遗传和永久环境影响进行建模。 DIM的估计遗传力范围从DMI的0.21至0.40,从FPCM产量的0.20至0.43,从LIM到LW的0.25至0.48。与哺乳中期相比,在哺乳早期和晚期,不同DIM的DMI之间的遗传相关性相对较低。 DMI和FPCM产量之间的遗传相关性在DIM中有所不同。在整个哺乳期,早期泌乳期的FPCM产量与DMI之间呈负相关(高达-0.5),而当两个性状处于哺乳中期时,则呈高度正相关(高于0.8)。泌乳初期,DMI与LW之间的相关性为0.6,而泌乳中期则为0.4。在哺乳中期,估计FPCM产量与LW(0.3-0.5)之间的相关性最高。但是,DMI与FPCM产量或LW之间的遗传相关性在DIM中不对称,并且根据首先测量的性状而有所不同。我们的研究结果有助于了解哺乳期特定天数的DMI,FPCM产量和LW的遗传关系。

著录项

  • 来源
    《Journal of dairy science》 |2014年第9期|5851-5862|共12页
  • 作者单位

    Animal Breeding and Genomics Centre, Wageningen UR Livestock Research, 8200 AB Lelystad, the Netherlands,Animal Breeding and Genomics Centre, Wageningen University, 6700 AH Wageningen, the Netherlands,Mococha Research Station, National Research Institute of Forestry, Agriculture and Livestock, 97454 Mococha, Yucatan, Mexico;

    Animal Breeding and Genomics Centre, Wageningen UR Livestock Research, 8200 AB Lelystad, the Netherlands,Animal Breeding and Genomics Centre, Wageningen University, 6700 AH Wageningen, the Netherlands;

    Animal Breeding and Genomics Centre, Wageningen UR Livestock Research, 8200 AB Lelystad, the Netherlands;

    Animal Nutrition Group, Wageningen UR Livestock Research, 8200 AB Lelystad, the Netherlands;

    Adaptation Physiology, Wageningen University, 6700 AH Wageningen, the Netherlands;

    Biosciences Research Division, Department of Environment and Primary Industries Victoria, 5 Ring Road, Bundoora, VIC 3083, Australia;

    Animal Breeding and Genomics Centre, Wageningen UR Livestock Research, 8200 AB Lelystad, the Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    feed intake; milk yield; liveweight; genetic correlation; random regression;

    机译:采食量牛奶产量活重遗传相关随机回归;

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