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Energy partitioning by broiler breeder pullets in skip-a-day and precision feeding systems

机译:肉鸡饲养员在跳过一天和精密喂养系统中的能量分区

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An empirical nonlinear mixed model was derived to describe metabolizable energy (ME) partitioning in Ross 308 broiler breeder pullets. Its coefficients described ME used for total heat production (HP) and growth. A total of 630 pullets were randomly and equally assigned to 2 treatments: precision feeding (PF) and conventional skip-a-day feeding (CON) from 10 to 23 wk of age. The PF system allowed birds to enter voluntarily at any time, weighed them, and provided access to feed for 60 s if their BW was less than the target BW. Birds in the CON treatment were fed as a group on alternate days. Energetic efficiency of pullets was evaluated using residual total heat production (RHP), defined as the difference between observed and predicted total HP. Additionally, ME intake (MEI), ADG, HP, and cumulative feed conversion ratio (FCR) were calculated for the entire experimental period. The energy partitioning model (P & 0.05) predicted MEI = (120+u)BW0.68 + 1.52(ADG) + epsilon. Total HP was (120 kcal/kg(0.68) + u); the energy requirement for each g of BW gain was 1.52 kcal/d. The random variable u similar to N (0, sigma(2)(u)) indicated a pen level HP standard deviation sigma(u) = 12.1 kcal/kg(0.68). Over the experimental period, for CON and PF treatments, respectively, MEI was 194 and 174 kcal/d (P & 0.001); ADG was 15.3 and 15.4 g/d (P = 0.94); HP was 129 and 111 kcal/kg(0.68) (P & 0.001); FCR was 4.888 and 4.057 (P & 0.001); and RHP was 0.12 and -0.12 kcal/kg(0.68) (P = 0.73). The CON pullets had similar ADG, but higher MEI relative to PF, consistent with levels of heat production predicted by RHP. The PF pullets had lower cumulative FCR compared to CON pullets. The PF pullets lost less energy as heat, likely because they were fed continuously, reducing the need to store and mobilize nutrients compared to CON pullets. Thus, increased feeding frequency likely increased PF pullet efficiency.
机译:衍生经验非线性混合模型,以描述罗斯308肉鸡饲养剂牵引中的代谢能量(ME)分区。其系数描述了我用于总热量生产(HP)和生长。总共630个左右是随机的,同等地分配到2种治疗:精密喂养(PF)和常规跳过的饲料(CON)从10至23周龄。 PF系统允许鸟类随时自愿进入,称重它们,如果它们的BW小于目标BW,则提供对60秒的进料。 Con治疗中的鸟类在交替日喂养作为群体。使用残留的总热量(RHP)评估李子的能量效率,定义为观察和预测总HP之间的差异。此外,在整个实验期间计算ME Intake(MEI),ADG,HP和累积饲料转换比(FCR)。能量分区模型(P& 0.05)预测Mei =(120 + U)Bw0.68 + 1.52(ADG)+ epsilon。总HP是(120千卡/千克(0.68)+ U);每G的BW增益的能量要求为1.52 kcal / d。类似于N的随机变量U(0,Sigma(2)(U))指示了一款PEN级HP标准偏差Sigma(U)= 12.1kcal / kg(0.68)。在实验期间,对于Con和PF治疗,Mei分别为194和174 kcal / d(p& 0.001); ADG为15.3和15.4 g / d(p = 0.94); HP为129和111 kcal / kg(0.68)(P& 0.001); FCR为4.888和4.057(P& 0.001); rhP为0.12和-0.12 kcal / kg(0.68)(p = 0.73)。 CON丙瓶具有类似的ADG,但相对于PF具有更高的MEI,与RHP预测的热量水平一致。与CON拉管相比,PF瓶子具有较低的累积FCR。 PF瓶子的能量减少,可能是因为它们连续进料,减少了与脉冲扣相比储存和动员营养物的需要。因此,增加的馈电频率可能增加了PF载体效率。

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