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Relative metabolizable energy values for fats and oils in young broilers and adult roosters

机译:年轻肉鸡和成年植物饲料中的脂肪和油的相对代谢能量值

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Our goal was to determine if relative bioavailability values (RBV) for fats and oils (lipids) determined in adult roosters are different than RBV determined with young broiler chickens. Lipids that were expected to have widely varying ME content were evaluated using a slope-ratio approach in adult roosters (Exp. 1) via the precision-fed rooster assay (PFRA) and broiler chicks via a growth assay (Exp. 2). The same lipids were tested in both experiments and were refined corn oil (RCO), a 2:1 blend of stearic acid (C18:0) with RCO (SAB1), a 1:1 blend of C18:0 with RCO (SAB2), tallow (TW), poultry fat (PF), and corn oil from a corn ethanol plant (DDGSCO). In Exp. 1, roosters were tube-fed diets containing 0, 5, and 10% of supplemental lipid in ground corn. In Exp. 2, diets consisted of 0, 5, and 10% supplemental lipid in an amino-acid fortified corn-soybean meal diet. Chicks were limit-fed test diets from 10 to 20 d posthatch to maintain energy as the growth-limiting factor. The TMEn of diets or BW gain of chicks were regressed on supplemental lipid level. The RBV were calculated as the regression coefficient of the test lipid divided by that of RCO. For Exp. 1 a non-linear response was observed for SAB2; however, the RBV for SAB1 (22%), TW (72%), PF (96%), and DDGSCO (90%) were as expected. The RBV of SAB1 and TW were lower (P < 0.001) than RCO, while PF and DDGSCO were not different than RCO. For Exp. 2, BW increased linearly in proportion to the energy content of the lipid sources. The RBV of SAB1 (22%), SAB2 (46%), and TW (76%), were lower (P < 0.001) than RCO, while PF (96%) and DDGSCO (97%) were not different than RCO. Excellent agreement was obtained for RBV between the two assays, with rooster and chick values being similar and the ranking of the lipids being the same for the two assays.
机译:我们的目标是确定成年植物中测定的脂肪和油(脂质)的相对生物利用度值(RBV)是否与用幼肉鸡鸡确定的RBV不同。通过精密喂养的雄鸡测定(PFRA)和肉鸡通过生长测定(Exp.2),使用成年雄鸡(Exp.1)中的坡度比方法评估预期对我的含量广泛改变含量的脂质。在两种实验中测试相同的脂质,并用RCO(SAB1),将硬脂酸(C18:0)的2:1共混物(C18:0),1:1与RCO(SAB2)共混物(SAB2)来自玉米乙醇植物(DDGSCO)的牛油脂肪(TW),家禽脂肪(PF)和玉米油。在exp。 1,植物饲料是含有0,5和10%的底玉米含有0,5和10%的补充脂质的管喂食。在exp。 2,饮食包括0,5和10%的氨基酸强化玉米豆粕饮食中的补充脂质。雏鸡是限制喂养的测试饮食从10到20 d posthatch,以保持能量作为生长限制因子。在补充脂质水平上消退了饮食或雏鸡的增长增益。 RBV被计算为试验脂质的回归系数除以RCO的回归系数。对于Exp。 1对于SAB2观察到非线性响应;但是,SAB1(22%),TW(72%),PF(96%)和DDGSCO(90%)的RBV如预期。 SAB1和TW的RBV比RCO更低(P <0.001),而PF和DDGSCO与RCO不同。对于Exp。如图2所示,BW与脂质源的能量含量成比例地增加。 SAB1(22%),SAB2(46%)和TW(76%)的RBV比RCO更低(P <0.001),而PF(96%)和DDGSCO(97%)与RCO不同。在两种测定之间获得RBV的良好协议,雄鸡和小鸡值类似,并且两种测定的脂质的排名是相同的。

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