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Genetics of lactation persistency and relationships with reproductive performance in Holsteins.

机译:荷斯坦奶牛泌乳持续性的遗传学及其与生殖性能的关系。

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摘要

The objectives of this study were (1) to estimate the heritability of two measures of persistency, (2) to quantify genetic correlations between persistency and 305-d milk yield, and (3) to estimate genetic and phenotypic relationships between lactation persistency and reproductive performance. A two-stage process was used; (1) the Multiple Trait Prediction procedure was used to predict 305-day lactation yields from individual milk, fat and protein test day yields, using Wilmink's lactation curve and (2) these estimates were then used as dependent variables in an animal model to calculate genetic parameters using a software package for multivariate mixed models via Gibbs sampling. Persistency of milk, fat, and protein were defined as (1) predicted yield on day 280 of lactation as a percentage of predicted yield on day 60 of lactation, and (2) the b-parameter of the Wilmink function for each yield trait. Reproductive traits included age at first insemination, non-return rate at 56 days as a virgin heifer and first calf heifer, calving ease, and calving interval. Phenotypically, as lactation number increased, and as yield increased, persistency decreased. Heritability of milk persistency ranged from 0.17 to 0.37. Heritability of the Wilmink b parameter for milk yield was much higher in second lactation compared to that in first or third lactation, and was generally more heritable than predicted milk yield on day 280 of lactation as a percentage of predicted yield on day 60 of lactation. Genetic correlations of persistency between lactations were moderate, with correlations between subsequent lactations being higher than between first and third lactation. The Wilmink b parameter for milk yield was selected as a measure for persistency for the remainder of the study because of its moderate heritability, ease of computation and its weak genetic correlation with 305-d yields. Heritabilities of reproductive traits were low (0.03 to 0.19). The highest heritability was found for AFS. Genetic correlations between heifer fertility traits and persistency in first lactation were favourable. Genetically, first lactation was more persistent if heifers were younger when they were bred as a heifer, and conceived quickly and easily. Longer calving interval between first and second calving was associated with higher persistency in first lactation. Relationships between persistency and heifer and cow fertility are clearly different and should be investigated further. Later peak daily milk yield was also associated with a longer calving interval. Phenotypic correlations between reproductive traits and persistency were weaker than their genetic counterparts.
机译:这项研究的目的是(1)估计两种持久性指标的遗传力;(2)量化持久性和305-d产奶量之间的遗传相关性;(3)估计泌乳持久性和生殖之间的遗传和表型关系性能。使用了两个阶段的过程。 (1)使用威尔明克的泌乳曲线,使用多重性状预测程序从单个牛奶,脂肪和蛋白质测试日的产量中预测305天的泌乳量,(2)然后将这些估计值用作动物模型中的因变量,以进行计算使用软件包通过Gibbs采样获得遗传参数。牛奶,脂肪和蛋白质的持久性定义为(1)泌乳第280天的预计产量与泌乳第60天的预计产量的百分比,以及(2)每个产量性状的Wilmink函数的b参数。生殖性状包括初次授精时的年龄,初生小母牛和初生小母牛的第56天的不re回率,产犊的容易程度和产犊间隔。从表型上看,随着泌乳次数的增加和产量的增加,持久性降低。牛奶持久性的遗传力范围为0.17至0.37。与第一次或第三次泌乳相比,第二次哺乳期的Wilmink b参数对奶产量的遗传力要高得多,并且通常比泌乳第280天的预计奶量(在泌乳第60天的预计产量的百分比)上具有更高的遗传力。泌乳之间持续性的遗传相关性中等,后续泌乳之间的相关性高于第一次和第三次泌乳之间的相关性。选择该牛奶产量的Wilmink b参数作为其余研究的持久性度量,因为它具有中等的遗传力,易于计算且与305-d产量的遗传相关性较弱。生殖性状的遗传力较低(0.03至0.19)。发现AFS的遗传力最高。小母牛生育力性状与第一次泌乳的持续性之间的遗传相关性是有利的。从基因上讲,如果小母牛以小母牛的形式繁殖,并且很快又容易受孕,那么第一次哺乳会更持久。第一次和第二次产犊之间的产犊间隔时间越长,第一次泌乳的持续性越高。持久性与小母牛和母牛生育力之间的关系明显不同,应进一步研究。后期峰值日产奶量也与更长的产犊间隔有关。生殖性状和持久性之间的表型相关性比其遗传对应性弱。

著录项

  • 作者

    Muir, Bethany Lynn.;

  • 作者单位

    University of Guelph (Canada).;

  • 授予单位 University of Guelph (Canada).;
  • 学科 Biology Genetics.;Agriculture Animal Culture and Nutrition.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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