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对繁殖概率进而对生产寿命的性能影响进行建模,有助于预测奶牛的终身效率。

Modelling impacts of performance on the probability of reproducing, and thereby on productive lifespan, allow prediction of lifetime efficiency in dairy cows.

作者信息

Phuong H N, Blavy P, Martin O, Schmidely P, Friggens N C

机构信息

1INRA, UMR 0791 Modélisation Systémique Appliquée aux Ruminants,F-75005Paris,France.

出版信息

Animal. 2016 Jan;10(1):106-16. doi: 10.1017/S1751731115001718. Epub 2015 Aug 24.

Abstract

Reproductive success is a key component of lifetime efficiency - which is the ratio of energy in milk (MJ) to energy intake (MJ) over the lifespan, of cows. At the animal level, breeding and feeding management can substantially impact milk yield, body condition and energy balance of cows, which are known as major contributors to reproductive failure in dairy cattle. This study extended an existing lifetime performance model to incorporate the impacts that performance changes due to changing breeding and feeding strategies have on the probability of reproducing and thereby on the productive lifespan, and thus allow the prediction of a cow's lifetime efficiency. The model is dynamic and stochastic, with an individual cow being the unit modelled and one day being the unit of time. To evaluate the model, data from a French study including Holstein and Normande cows fed high-concentrate diets and data from a Scottish study including Holstein cows selected for high and average genetic merit for fat plus protein that were fed high- v. low-concentrate diets were used. Generally, the model consistently simulated productive and reproductive performance of various genotypes of cows across feeding systems. In the French data, the model adequately simulated the reproductive performance of Holsteins but significantly under-predicted that of Normande cows. In the Scottish data, conception to first service was comparably simulated, whereas interval traits were slightly under-predicted. Selection for greater milk production impaired the reproductive performance and lifespan but not lifetime efficiency. The definition of lifetime efficiency used in this model did not include associated costs or herd-level effects. Further works should include such economic indicators to allow more accurate simulation of lifetime profitability in different production scenarios.

摘要

繁殖成功率是终生效率的关键组成部分,终生效率是指奶牛一生中产奶能量(兆焦耳)与能量摄入量(兆焦耳)的比值。在个体层面,繁殖和饲养管理会对奶牛的产奶量、体况和能量平衡产生重大影响,而这些因素是导致奶牛繁殖失败的主要原因。本研究扩展了现有的终生性能模型,以纳入因繁殖和饲养策略变化而导致的性能变化对繁殖概率以及进而对生产寿命的影响,从而能够预测奶牛的终生效率。该模型是动态随机的,以个体奶牛为建模单位,以一天为时间单位。为了评估该模型,使用了来自法国一项研究的数据,该研究包括饲喂高浓缩日粮的荷斯坦奶牛和诺曼底奶牛,以及来自苏格兰一项研究的数据,该研究包括为脂肪加蛋白质选择了高和平均遗传价值的荷斯坦奶牛,它们分别饲喂高浓缩日粮和低浓缩日粮。总体而言,该模型一致地模拟了不同饲喂系统中各种基因型奶牛的生产和繁殖性能。在法国的数据中,该模型充分模拟了荷斯坦奶牛的繁殖性能,但对诺曼底奶牛的繁殖性能预测明显偏低。在苏格兰的数据中,首次配种受孕情况得到了相当程度的模拟,而间隔性状则略有低估。选择更高的产奶量会损害繁殖性能和寿命,但不会影响终生效率。本模型中使用的终生效率定义不包括相关成本或畜群水平的影响。进一步的研究应纳入此类经济指标,以便更准确地模拟不同生产场景下的终生盈利能力。

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