Department of Animal Sciences, Universidade Estadual Paulista, College of Agriculture and Veterinary Sciences, Via de Acesso Professor Paulo Donato Castelane s/n, 14883-900, Jaboticabal, SP, Brazil.
Animal. 2020 Aug;14(S2):s275-s285. doi: 10.1017/S1751731120001445. Epub 2020 Jun 29.
Knowing how energy intake is partitioned between maintenance, growth and egg production (EP) of birds makes it possible to structure models and recommend energy intakes based on differences in the BW, weight gain (WG) and EP on commercial quail farms. This research was a dose-response study to re-evaluate the energy partition for Japanese quails in the EP phase, based on the dilution technique to modify the retained energy (RE) of the birds. A total of 300 VICAMI® Japanese quail, housed in climatic chambers, were used from 16 weeks of age, with averages for BW of 185 g and EP of 78%, for 10 weeks. To modify the RE in the bird's body, a qualitative dilution of dietary energy was used. Ten treatments (metabolisable energy levels) were distributed in completely randomised units, with six replicates of five quails per experimental unit. Metabolisable energy intake (MEI), egg mass (EM) and RE were expressed in kJ/kg0.67. The utilisation efficiency (kt) was estimated from the relationship between RE and MEI. The metabolisable energy for maintenance was given by RE = 0. The net energy requirement for WG was obtained from the relationship between RE in the BW as a function of the BW. The utilisation efficiency for EP (ko) was obtained from the relationship between EM and RE corrected MEI for maintenance and WG. Based on these efficiencies, the requirements for WG and EM were calculated. The energy intake by Japanese quails was partitioned according to the model: MEI = 569.8 × BW0.67 + 22 × WG + 13 × EM. The current study provides procedures and methods designed for quails as well as a simple and flexible model that can be quickly adopted by technicians and poultry companies.
了解鸟类的能量摄入如何在维持、生长和产蛋(EP)之间分配,使得基于商业鹌鹑养殖场的 BW、体重增加(WG)和 EP 的差异来构建模型和推荐能量摄入成为可能。这项研究是一项剂量反应研究,旨在基于修改鸟类保留能量(RE)的稀释技术,重新评估 EP 阶段日本鹌鹑的能量分配。总共使用了 300 只 VICAMI®日本鹌鹑,在气候室中饲养,从 16 周龄开始,BW 平均为 185g,EP 为 78%,持续 10 周。为了修改鸟类体内的 RE,使用了膳食能量的定性稀释。10 种处理(可代谢能量水平)以完全随机单位分布,每个实验单位有 6 个重复,每个重复有 5 只鹌鹑。可代谢能量摄入量(MEI)、蛋重(EM)和 RE 以 kJ/kg0.67 表示。利用效率(kt)是根据 RE 和 MEI 之间的关系估计的。维持所需的可代谢能量由 RE = 0 给出。WG 的净能量需求是从 RE 与 BW 之间的关系中获得的,BW 是作为 BW 的函数。EP 的利用效率(ko)是从 EM 和 RE 之间的关系中获得的,RE 对维持和 WG 进行了校正 MEI。基于这些效率,计算了 WG 和 EM 的需求。根据该模型,日本鹌鹑的能量摄入分配如下:MEI = 569.8×BW0.67 + 22×WG + 13×EM。本研究为鹌鹑提供了程序和方法,以及一个简单灵活的模型,技术人员和家禽公司可以快速采用。