ABSTRACT Characteristics of feed efficiency within and across lactation in dairy cows and the effect of genetic selection
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Characteristics of feed efficiency within and across lactation in dairy cows and the effect of genetic selection

机译:奶牛泌乳前后的饲料效率特征及遗传选择的影响

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ABSTRACTThe objective of the present study was to investigate the phenotypic inter- and intra-relationships within and among alternative feed efficiency metrics across different stages of lactation and parities; the expected effect of genetic selection for feed efficiency on the resulting phenotypic lactation profiles was also quantified. A total of 8,199 net energy intake (NEI) test-day records from 2,505 lactations on 1,290 cows were used. Derived efficiency traits were either ratio based or residual based; the latter were derived from least squares regression models. Residual energy intake (REI) was defined as NEIminus predicted energy requirements based on lactation performance; residual energy production (REP) was defined as net energy for lactation minus predicted energy requirements based on lactation performance. Energy conversion efficiency was defined as net energy for lactation divided by NEI. Pearson phenotypic correlations among traits were computed across lactation stages and parities, and the significance of the differences was determined using the Fisher r-to-z transformation. Sources of variation in the feed efficiency metrics were investigated using linear mixed models, which included the fixed effects of contemporary group, breed, parity, stage of lactation, and the 2-way interaction of parity by stage of lactation. With the exception of REI, parity was associated with all efficiency and production traits. Stage of lactation, as well as the 2-way interaction of parity by stage of lactation, were associated with all efficiency and production traits. Phenotypic correlations among the efficiency and production traits differed not only by stage of lactation but also by parity. For example, the strong phenotypic correlation between REI and energy balance (EB; 0.89) for cows in parity 3 or greater and early lactation was weaker for parity 1 cows at the same lactation stage (0.81), suggesting primiparous cows use the ingested energy for both milk production and growth. Nonetheless, these strong phenotypic correlations between REI and EB suggested negative REI animals (i.e., more efficient) are also in more negative EB. These correlations were further supported when assessing the effect on phenotypic performance of animals genetically divergent for feed intake and efficiency based on parental average. Animals genetically selected to have lower REI resulted in cows who consumed less NEIbut were also in negative EB throughout the entire lactation. Nonetheless, such repercussions of negative EB do not imply that selection for negative REI (as defined here) should not be practiced, but instead should be undertaken within the framework of a balanced breeding objective, which includes traits such as reproduction and health.
机译: 抽象 本研究的目的是调查不同泌乳和胎次的替代饲料效率指标内和之间的表型内部和内部关系;还量化了遗传选择对饲料效率的预期影响,对产生的表型泌乳曲线的影响。使用来自1,290头母牛的2,505次哺乳期的总计8,199净能量摄入(NE I )测试日记录。派生效率特征是基于比率或基于残差的;后者来自最小二乘回归模型。剩余能量摄入量(REI)定义为NE I 减去基于泌乳性能的预计能量需求;剩余能量生产(REP)定义为哺乳期的净能量减去基于泌乳性能的预计能量需求。能量转换效率定义为哺乳期的净能量除以NE I 。在哺乳阶段和胎次之间计算性状之间的皮尔逊表型相关性,并使用Fisher r-z转换确定差异的显着性。使用线性混合模型研究了饲料效率指标的变化来源,其中包括当代群体,品种,胎次,泌乳阶段以及胎次的两性相互作用的固定影响。除REI外,均等与所有效率和生产特性有关。泌乳阶段以及泌乳阶段的两性均等相互作用与所有效率和生产性状有关。效率和生产性状之间的表型相关性不仅因哺乳阶段而异,也因胎次而异。例如,在同等泌乳阶段(0.81),处于同等泌乳阶段(0.81)的三胎及以上的母牛,REI与能量平衡(EB; 0.89)之间存在很强的表型相关性,而同等生育率的一头母牛的早期泌乳则较弱。牛奶的生产和增长。尽管如此,REI和EB之间的这些强烈的表型相关性表明,阴性REI动物(即效率更高)也具有更大的阴性EB。当根据父母平均水平评估因采食量和饲料效率有遗传差异的动物对表型表现的影响时,这些相关性得到进一步支持。经过基因选择具有较低REI的动物导致母牛的NE I 消耗较少,但整个泌乳期的EB均为阴性。尽管如此,这种对阴性EB的影响并不意味着不应该选择阴性REI(如此处所定义),而应在平衡繁殖目标的框架内进行,该目标包括繁殖和健康等特征。

著录项

  • 来源
    《Journal of dairy science》 |2018年第2期|1267-1280|共14页
  • 作者单位

    Teagasc, Animal & Grassland Research and Innovation Center, Moorepark,Institute of Veterinary, Animal and Biomedical Science, Massey University;

    Institute of Veterinary, Animal and Biomedical Science, Massey University;

    Teagasc, Animal & Grassland Research and Innovation Center, Moorepark;

    Teagasc, Animal & Grassland Research and Innovation Center, Moorepark;

    Teagasc, Animal & Grassland Research and Innovation Center, Moorepark;

    Teagasc, Animal & Grassland Research and Innovation Center, Moorepark;

    Institute of Veterinary, Animal and Biomedical Science, Massey University;

    Teagasc, Animal & Grassland Research and Innovation Center, Moorepark;

  • 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

    estimated breeding value; feed intake; residual energy intake; energy balance; heritability;

    机译:估计繁殖价值;采食量;剩余能量摄入量;能量平衡;遗传力;

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