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首页> 外文期刊>Poultry Science >Energy determination of corn co-products fed to broiler chicks from 15 to 24 days of age, and use of composition analysis to predict nitrogen-corrected apparent metabolizable energy.
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Energy determination of corn co-products fed to broiler chicks from 15 to 24 days of age, and use of composition analysis to predict nitrogen-corrected apparent metabolizable energy.

机译:测定饲喂15至24天大的雏鸡的玉米副产品的能量,并使用成分分析预测经过氮校正的表观可代谢能量。

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An experiment (3 trials) was conducted to determine the AME(n) of 15 corn co-products obtained from various wet and dry milling plants, and to develop prediction equations for AME(n) based on chemical composition. Co-products included distillers dried grains with solubles (DDGS, n = 6), high-protein distillers dried grains (n = 2), corn germ (n = 2), corn germ meal, corn bran with solubles, corn gluten meal, corn gluten feed, and dehulled, degermed corn. Treatments (15) consisted of 85% inclusion of the corn-soybean meal basal diet combined with a 15% inclusion of each corn co-product, as well as a control diet containing glucose*H(2)O (15%) at the expense of the co-product. In each trial, Ross x Ross 708 chicks (10 birds per pen) were randomly assigned to 16 dietary treatments (12 replicate pens; 4 replicate pens per trial). After a 7-d diet acclimation period from 15 to 22 d of age, a 48-h total excreta collection was conducted for the determination of AME(n). Co-products were analyzed for gross energy, CP, moisture, crude fat, starch, crude fiber, ash, total dietary fiber, neutral detergent fiber, and acid detergent fiber, and hemicellulose was determined by difference. Stepwise regression resulted in the following equation: AME(n), kcal/kg of DM = 3,517 + (46.02 x % crude fat, DM basis) - (82.47 x % ash, DM basis) - (33.27 x % hemicellulose, DM basis) (R(2) = 0.89; SEM = 191; P <= 0.01). Removing hemicellulose from the model resulted in the following equation: AME(n), kcal/kg of DM = (-30.19 x % neutral detergent fiber, DM basis) + (0.81 x gross energy, kcal/kg of DM basis) - (12.26 x % CP, DM basis) (R(2) = 0.87; SEM = 196; P <= 0.01). These results indicate that nutrient composition may be used to generate AME(n) prediction equations for corn co-products fed to broiler chicks.
机译:进行了一项试验(3个试验),以确定从各种湿磨工厂和干磨工厂获得的15种玉米副产品的AME(n),并根据化学组成建立AME(n)的预测方程。副产品包括含可溶物的酒糟(DDGS,n = 6),高蛋白含酒糟的酒糟(n = 2),玉米胚芽(n = 2),玉米胚芽粉,含可溶物的麸皮,玉米蛋白粉,玉米面筋饲料,去壳,去玉米粒。处理(15)包括将玉米-豆粕基础日粮添加85%,再将每种玉米副产品添加15%,以及在日粮中含葡萄糖* H(2)O(15%)的对照日粮。副产品的费用。在每个试验中,将Ross x Ross 708雏鸡(每只围栏10只鸡)随机分配到16种饮食处理中(12个重复围栏;每个试验4个重复围栏)。在15至22 d的饮食中适应7天后,进行了48小时的总排泄物收集以确定AME(n)。分析副产物的总能量,CP,水分,粗脂肪,淀粉,粗纤维,灰分,总膳食纤维,中性洗涤剂纤维和酸性洗涤剂纤维,并通过差值确定半纤维素。逐步回归得出以下方程式:AME(n),千卡的千卡/千克DM = 3,517 +(46.02 x%的粗脂肪,以DM为基础)-(82.47 x%的灰分,以DM为基础)-(33.27 x%的半纤维素,以DM为基础)(R(2)= 0.89; SEM = 191; P <= 0.01)。从模型中除去半纤维素,得出以下方程式:AME(n),千卡的千卡/千克=(-30.19 x%中性洗涤剂纤维,千卡,基数)+(0.81 x总能量,千卡/千卡,基千基)-( 12.26 x%CP,以DM为基础)(R(2)= 0.87; SEM = 196; P <= 0.01)。这些结果表明,营养成分可用于为饲喂肉鸡的玉米副产品生成AME(n)预测方程。

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