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Implementation of net energy evaluating system in laying hens: Validation by performance and egg quality

机译:铺设母鸡净能源评估系统的实施:性能和鸡蛋质量验证

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摘要

Three experiments were conducted to determine the effect of different dietary net energy (NE) and AMEn ratios (NE:AMEn) on performance, egg quality, and heat production (HP) in laying hens. In experiment 1, 62 Hy-Line Brown hens were fed 2 treatments with 31 replicates from 44 to 54 wk of age. In experiment 2, 600 hens of the same strain were fed 3 treatments from 22 to 42 wk of age with 10 replicates. Both used a completely randomized design. Diets were based on corn, wheat, wheat bran, barley, soybean meal, canola meal, meat and bone meal, and canola oil. In both experiments, the NE:AMEn ratio of diets was increased with higher oil inclusion compared with T1 controls. The AMEn (kcal/kg), NE (kcal/kg), ether extract (g/kg), and CP (g/kg), respectively, on a DM basis in experiment 1 was T1: 3,011, 2,288, 42, 202 and T2: 3,023, 2,374, 81, 203; and in experiment 2, T1: 3,026, 2,324, 25, 187; T2: 2,949, 2,315, 61, 185; and T3: 3,026, 2,397, 73, 181. Increasing the ratio of NE:AMEn decreased feed intake (P < 0.001) and increased egg mass (P < 0.05) in experiment 2 and increased egg weight (P < 0.01), decreased feed conversion ratio (P < 0.01), increased egg albumen % (P < 0.001), and decreased yolk % (P < 0.05) and shell % (P < 0.05) compared with T1 controls in both experiments. Haugh units and yolk color scores were increased with high NE:AMEn in both experiments (P < 0.001; P < 0.01). Experiment 3 was conducted in calorimetry chambers to measure HP in birds fed experiment 2 diets. Increasing the NE:AMEn increased total retained energy (RE), RE as fat, and RE in the body (kcal/kg BW0.75/D) and NE:AME. The results indicate that using oil to increase the NE:AMEn results in improved performance and egg quality and more efficient energy utilization.
机译:进行了三个实验以确定不同膳食净能量(NE)和Amen比率(NE:Amen)对铺设母鸡的性能,鸡蛋质量和热量生产(HP)的影响。在实验1中,将62个Hy-Line Brown母鸡喂21例,从44至54周龄的31个重复。在实验2中,将600只母母鸡相同的菌株从22至42%的年龄喂食,10个重复。两者都使用完全随机设计。饮食基于玉米,小麦,小麦麸皮,大麦,大豆饭,油菜粉,肉和骨粉和油菜油。在两个实验中,与T1对照相比,NE:饮食的饮食率较高,饮食较高。在实验1中的DM基础上分别在DM基础上分别在DM基础上进行AmeN(kcal / kg),乙醚提取物(g / kg)是T1:3,011,2,288,42,202和T2:3,023,2,374,81,203;在实验2中,T1:3,026,2,324,25,187; T2:2,949,2,315,61,185;和T3:3,026,2,397,73,181增加了Ne:Amen减少的进料摄入量(P <0.001),并增加了实验2中的卵子质量(P <0.05),增加了鸡蛋重量(P <0.01),饲料减少转化率(P <0.01),蛋白蛋白%(P <0.001)增加,与两种实验中的T1对照相比,蛋白蛋白%(P <0.001)和贝壳%(P <0.05)降低。 Haugh单位和蛋黄颜色分数随着高NE:Amen在两种实验中增加(P <0.001; P <0.01)。在热量腔室中进行实验3,以测量喂养喂养实验2饮食的幼虫。增加NE:AMEN增加了总保留的能量(RE),RE作为脂肪,并在体内(KCAL / KG BW0.75 / D)和NE:AME。结果表明,使用油来增加NE:Amen导致改善的性能和卵质质量和更有效的能量利用。

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