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Reducing the period of data collection for intake and gain to improve response to selection for feed efficiency in beef cattle

机译:减少收集和获取数据的时间以提高对肉牛饲料效率选择的响应

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摘要

Shortening the period of recording individual feed intake may improve selection response for feed efficiency by increasing the number of cattle that can be recorded given facilities of fixed capacity. Individual DMI and ADG records of 3,462 steers and 2,869 heifers over the entire intake recording period (range 62 to 154 d; mean 83 d; DMI83 and ADG83, respectively), DMI and ADG for the first 42 d of the recording period (DMI42 and ADG42, respectively), and postweaning ADG based on the difference between weaning and yearling weights (>PADG) were analyzed. Genetic correlations among DMI42 and DMI83, ADG42 and ADG83, ADG42 and PADG, and ADG83 and PADG were 0.995, 0.962, 0.852, and 0.822, respectively. Four objective functions [feed:gain ratio in steers (>FGS) and heifers (>FGH); residual gain (>RG); and residual feed intake (>RFI)] based on DMI83 and ADG83 were considered. Indices using DMI42 and ADG42 (I42); DMI42 and PADG (IPW); and DMI42, ADG42, and PADG (IALL) were developed. Accuracy of the 5 EBV, 4 objectives, and 12 objective × index combinations were computed for all 12,033 animals in the pedigree. Accuracies of indices (>IA) were summarized for animals with accuracies for objectives (>OA) of 0.25, 0.5, 0.75, and 1. For the RG objective and animals with OA of 0.75, indices I42, IPW, and IALL had IA of 0.63, 0.55, and 0.67, respectively. Differences in IA increased with increased emphasis on ADG83 in the objective. Differences in IA between I42 and IPW usually increased with OA. Relative efficiency (>RE) of selection on 42-d tests compared with 83 d was computed based on differences in IA and selection intensities of 5%, 25%, 50%, and 75% under the 83-d scenario, assuming 65% more animals could be tested for 42 d. For 25% selected for the RG objective, and animals with OA of 0.75, indices I42, IPW, and IALL had RE of 1.02, 0.90, and 1.10, respectively. As % selected, OA, and emphasis on DMI increased, RE increased. Relative efficiency varied considerably according to assumptions. One-half of the scenarios considered had RE > 1.15 with a maximum of 2.02 and 77% RE > 1.0. A shorter period of recording DMI can improve selection response for feed efficiency. Selection for the efficiency objectives would not affect PADG. It will be most effective if ADG over the period coinciding with intake recording and ADG over a much longer period of time are simultaneously included in a multiple-trait genetic evaluation with DMI and used in a selection index for efficiency.
机译:通过增加在固定容量的设施下可以记录的牛的数量,缩短记录单个饲料摄入量的时间可以改善对饲料效率的选择响应。在整个进气记录期间(范围62至154 d;平均83 d; DMI83和ADG83),分别记录了3,462头牛和2,869头小母牛的DMI和ADG记录,记录期间的前42 d(DMI42和ADG)根据断奶和一岁体重之间的差异(> PADG )分析了断奶后ADG和ADG42。 DMI42和DMI83,ADG42和ADG83,ADG42和PADG以及ADG83和PADG之间的遗传相关性分别为0.995、0.962、0.852和0.822。四个目标函数[ste牛(> FGS )和小母牛(> FGH )的饲料:增重比例;剩余收益(> RG );和基于DMI83和ADG83的剩余饲料摄入量(> RFI )]。使用DMI42和ADG42(I42)的索引; DMI42和PADG(IPW);开发了DMI42,ADG42和PADG(IALL)。计算了谱系中所有12,033只动物的5个EBV,4个目标和12个客观×指数组合的准确性。总结了目标(> OA )的准确度(> OA )为0.25、0.5、0.75和1的动物的指数(> IA )的准确性。值为0.75时,索引I42,IPW和IALL的IA分别为0.63、0.55和0.67。 IA中的差异随着目标中对ADG83的日益重视而增加。 I42和IPW之间的IA差异通常随OA而增加。根据IA的差异以及在83-条件下的选择强度分别为5%,25%,50%和75%,计算42天测试与83天相比的相对效率(> RE )。在d场景中,假设可以测试42 d的动物多出65%。对于为RG目标选择的25%,以及OA为0.75的动物,指数I42,IPW和IALL的RE分别为1.02、0.90和1.10。当选择百分比时,OA和对DMI的重视程度增加,RE增加。根据假设,相对效率差异很大。所考虑的场景中有一半的RE> 1.15,最大为2.02,而77%RE> 1.0。记录DMI的时间较短可以改善进料效率的选择响应。选择效率目标不会影响PADG。如果将与摄入量记录相吻合的时期内的ADG和更长的时间段内的ADG同时纳入DMI的多性状遗传评估并用于效率选择指数中,将是最有效的。

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