Monogastric Research Centre, School of Agriculture and Environment, Massey University, Palmerston North 4442, New Zealand.
Monogastric Research Centre, School of Agriculture and Environment, Massey University, Palmerston North 4442, New Zealand.
Poult Sci. 2020 Dec;99(12):6809-6817. doi: 10.1016/j.psj.2020.08.072. Epub 2020 Sep 12.
Two experiments were conducted to determine the ileal endogenous energy losses (IEEL) and nitrogen-corrected apparent metabolizable energy (AMEn) and true ileal digestible energy (TIDE) of 4 cereal grains (corn, sorghum, wheat, and barley) for broilers. In experiment 1, a glucose-based purified diet was used to determine the IEEL for correcting the apparent ileal digestible energy (AIDE) values to TIDE. The diet was randomly allocated to 6 replicates (6 birds per replicate) of male broilers and fed from 18 to 21 d after hatch. The jejunal and ileal digesta were collected on day 21. The results showed that glucose absorption continued beyond the jejunum but was complete in the terminal ileum demonstrating that endogenous energy losses can be quantified in the ileal digesta of birds by feeding a glucose-based diet. The IEEL were determined to be 347 ± 29.4 kcal/kg DM intake. In experiment 2, 4 experimental diets with similar inclusion (957 g/kg) of grains were developed to determine the AMEn, AIDE, and TIDE. Titanium dioxide (5.0 g/kg) was added to all diets as an indigestible marker. Each diet was randomly allocated to 6 replicates (8 birds per replicate) and fed from 14 to 21 d after hatch, and the ileal digesta were collected on day 21. The AIDE was corrected to TIDE using the IEEL value determined in experiment 1. The TIDE of corn, sorghum, wheat, and barley were determined to be 3,920, 3,650, 3,138, and 2,885 kcal/kg DM, respectively, and was higher (P < 0.05) than the corresponding AMEn values of 3,439, 3,284, 2,576, and 2,371 kcal/kg DM, respectively. No differences were observed between the AMEn and AIDE. The AMEn:TIDE ratio tended (P = 0.06) to be lower for viscous cereals (wheat and barley) than that for nonviscous cereals (corn and sorghum). The apparent ileal digestibility of DM, nitrogen, and starch was positively correlated (P < 0.001) with TIDE (r = 0.990, 0.703, and 0.705, respectively) and the AMEn (r = 0.873, 0.483, and 0.656, respectively). Further studies are warranted to determine the TIDE of a range of ingredients and to investigate the application of TIDE as a potential available energy system in poultry feed formulations.
进行了两项实验,以确定 4 种谷物(玉米、高粱、小麦和大麦)的回肠内源能量损失(IEEL)和氮校正表观代谢能(AMEn)和真回肠可消化能(TIDE)。在实验 1 中,使用基于葡萄糖的纯化饮食来确定 IEEL,以校正 AIDE 值为 TIDE 值。该饮食随机分配给 6 个重复(每个重复 6 只鸡),并在孵化后 18-21 天进行喂养。第 21 天收集空肠和回肠内容物。结果表明,葡萄糖吸收超过空肠,但在回肠末端完全吸收,这表明可以通过喂养基于葡萄糖的饮食来定量评估鸟类回肠中的内源能量损失。IEEL 确定为 347±29.4 kcal/kg DM 摄入量。在实验 2 中,开发了 4 种具有相似谷物含量(957g/kg)的实验饮食,以确定 AMEn、AIDE 和 TIDE。所有饮食均添加了 5.0 g/kg 的二氧化钛作为不可消化标记物。每种饮食随机分配给 6 个重复(每个重复 8 只鸡),并在孵化后 14-21 天进行喂养,第 21 天收集回肠内容物。使用实验 1 中确定的 IEEL 值校正 AIDE 值为 TIDE 值。玉米、高粱、小麦和大麦的 TIDE 分别确定为 3920、3650、3138 和 2885 kcal/kg DM,分别高于相应的 AMEn 值 3439、3284、2576 和 2371 kcal/kg DM。AMEn 和 AIDE 之间没有观察到差异。粘性谷物(小麦和大麦)的 AMEn:TIDE 比值(P=0.06)低于非粘性谷物(玉米和高粱)。DM、氮和淀粉的表观回肠消化率与 TIDE(r=0.990、0.703 和 0.705)和 AMEn(r=0.873、0.483 和 0.656)呈正相关。有必要进一步研究以确定各种成分的 TIDE 值,并研究 TIDE 作为家禽饲料配方中潜在可用能量系统的应用。