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Energy and protein requirements of Holstein x Gyr crossbred heifers

机译:Holstein X Gyr串联母牛的能量和蛋白质要求

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Nutrient requirements in cattle are dependent on physiological stage, breed and environmental conditions. In Holstein x Gyr crossbred dairy heifers, the lack of data remains a limiting factor for estimating energy and protein requirements. Thus, we aimed to estimate the energy and protein requirements of Holstein x Gyr crossbred heifers raised under tropical conditions. Twenty-two crossbred (1/2 Holstein x 1/2 Gyr) heifers with an average initial BW of 102.2 +/- 3.4 kg and 3 to 4 months of age were used. To estimate requirements, the comparative slaughter technique was used: four animals were assigned to the reference group, slaughtered at the beginning of the experiment to estimate the initial empty BW (EBW) and composition of the animals that remained in the experiment. The remaining animals were randomized into three treatments based on targeted rates of BW gain: high (1.0 kg/day), low (0.5 kg/day) and close to maintenance (0.1 kg/day). At the end of the experiment, all animals were slaughtered to determine EBW, empty body gain (EBG) and body energy and protein contents. The linear regression parameters were estimated using PROC MIXED of SAS (version 9.4). Estimates of the parameters of non-linear regressions were adjusted through PROC NLIN of SAS using the Gauss-Newton method for parameter fit. The net requirements of energy for maintenance (NEm) and metabolizable energy for maintenance (MEm) were 0.303 and 0.469 MJ/EBW(0.75)per day, respectively. The efficiency of use of ME(m)was 64.5%. The estimated equation to predict the net energy requirement for gain (NEg) was: NEg(MJ/day) = 0.299 x EBW(0.75)x EBG(0.601). The efficiency of use of ME for gain (k(g)) was 30.7%. The requirement of metabolizable protein for maintenance was 3.52 g/EBW(0.75)per day. The equation to predict net protein requirement for gain (NPg) was: NPg(g/day) = 243.65 x EBW(-0.091)x EBG. The efficiency of use of metabolizable protein for gain (k) was 50.8%. We observed noteworthy differences when comparing to ME and protein requirements of Holstein x Gyr crossbred heifers with other systems. In addition, we also observed differences in estimates for NEm, NEg, NPg,k(g)andk. Therefore, we propose that the equations generated in the present study should be used to estimate energy and protein requirements for Holstein x Gyr crossbred dairy heifers raised in tropical conditions in the post-weaning phase up to 185 kg of BW.
机译:牛中的营养需求取决于生理阶段,品种和环境条件。在Holstein X Gyr杂交乳制品母乳母牛,缺乏数据仍然是估算能量和蛋白质要求的限制因素。因此,我们的目标是估计在热带条件下升高的Holstein X Gyr串联母牛的能量和蛋白质要求。二十二串(1/2孔酮x 1/2 Gyr)的直接母牛,其平均初始BW为102.2 +/- 3.4kg和3至4个月的年龄。为了估计要求,使用比较屠宰技术:将四只动物分配给参考组,在实验开始时屠宰,以估计初始空BW(EBW)和留在实验中的动物的组成。将剩余的动物基于BW增益的靶向速率随机分为三种处理:高(1.0千克/天),低(0.5千克/天)并接近维护(0.1千克/天)。在实验结束时,屠宰所有动物以确定EBW,空体增益(EBG)和体能和蛋白质含量。使用SAS(版本9.4)的PROC混合估计线性回归参数。使用Gauss-Newton方法进行参数拟合的GAUSE-Newton方法调整非线性回归参数的估计。维护能量(NEM)的净要求和用于维持的可代谢能量(MEM)分别为每天0.303和0.469 MJ / EBW(0.75)。我(m)的使用效率为64.5%。预测增益(NEG)净能量要求的估计方程是:Neg(MJ /天)= 0.299×EBW(0.75)X EBG(0.601)。我的增益使用效率(K(g))为30.7%。每天所述维护蛋白质的维护要求为3.52克/ EBW(0.75)。预测净蛋白质的增益(NPG)的等式是:NPG(G /天)= 243.65×EBW(-0.091)x EBG。用于增益(K)的代谢蛋白的使用效率为50.8%。当与其他系统的霍尔斯坦X Gyr串联母牛相比,我们观察到了值得注意的差异。此外,我们还观察到NEM,NEG,NPG,K(G)ANDK的估计差异。因此,我们提出了本研究中产生的等式应用于估计霍尔斯坦X Gyr串联乳粉的能量和蛋白质要求在断奶后阶段的热带条件下提升至185公斤BW。

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