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首页> 外文期刊>Journal of Animal and Feed Sciences >The nutritive value of hulled and hulless barley for growing pigs. 1. Determination of energy and protein digestibility with the in vivo and in vitro method
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The nutritive value of hulled and hulless barley for growing pigs. 1. Determination of energy and protein digestibility with the in vivo and in vitro method

机译:有壳和无壳大麦对生长中猪的营养价值。 1.用体内和体外方法测定能量和蛋白质的消化率

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An experiment was conducted to determine the digestibility of energy and crude protein (CP) in hulled and hulless barley with the in vivo and in vitro method. Six barrows were fed six diets according to a 6 x 6 Latin square design. The six diets included 950 g kg(-1) of four barleys and two mixtures. Diet A: hulled barley, c.v. Harrington I. Diet B: hulled barley, c.v.-Harrington II. The origin of c.v. Harrington in diet B was different from that in diet A, and therefore referred to as c.v. Harrington II. Diet C: hulless barley, c.v. CDC Buck. Diet D: hulless barley, c.v. CDC Richard. Diet E: mixture of c.v. Harrington I and c.v. CDC Buck (50:50, wt/wt). Diet F: mixture of c.v. Harrington II and c.v. CDC Richard (50:50, wt/wt). The mixtures were created in order to establish linear regression equations between in vivo and in vitro methods. Chromic oxide was used as the digestibility marker. The barrows were fed twice daily, at 08.00 and 20.00 h. Each experimental period consisted of an 8-d adaptation period followed by a 2-d collection period of faeces. The initial and final average body weights of the barrows were 40 and 90 kg, respectively. The in vivo energy digestibilities were higher (P < 0.05) in the hulless (81.4 to 84.7%) than in the hulled barleys (76.9 to 77.6%). The digestible energy contents in the hulless barleys ranged from 14.01 to 14.60 MJ kg(-1) while the contents in the hulled barleys ranged from 13.05 to 13.16 MJ kg(-1) (as-fed). The average digestible CP contents in the hulled and hulless barleys were nearly similar and were 88.0 and 89.7 g kg(-1) (as-fed), respectively. The in vivo energy and CP digestibilities in the barleys and their mixtures can be accurately predicted by in vitro values, as these were very high correlations between these methods for energy (r(2) = 0.93) and CP (r(2) = 0.87).
机译:进行了一项实验,以体内和体外方法确定脱壳和无壳大麦中能量和粗蛋白(CP)的消化率。根据6 x 6拉丁方形设计,给六个手推车喂食六种日粮。六种饮食包括950 g kg(-1)的四个大麦和两种混合物。饮食A:去壳的大麦,c.v。 Harrington I. Diet B:去壳大麦,c.v.-Harrington II。 c.v.的由来饮食B中的Harrington与饮食A中的Harrington不同,因此称为c.v.。哈灵顿二世。饮食C:无情的大麦,c.v。 CDC Buck。饮食D:无情的大麦,c.v。 CDC理查德。饮食E:c.v.的混合物Harrington I和c.v. CDC Buck(50:50,wt / wt)。饮食F:c.v.的混合物Harrington II和c.v. CDC理查德(50:50,wt / wt)。创建混合物是为了在体内和体外方法之间建立线性回归方程。氧化铬用作消化率标记。手推车每天在08.00和20.00 h饲喂两次。每个实验期由一个8天的适应期和一个2天的粪便收集期组成。手推车的初始和最终平均体重分别为40千克和90千克。无壳大麦(81.4%至84.7%)的体内能量消化率高于去壳大麦(76.9%至77.6%)(P <0.05)。大麦的可消化能量含量范围为14.01至14.60 MJ kg(-1),而大麦的可消化能量含量范围为13.05至13.16 MJ kg(-1)(原样)。脱壳大麦和无壳大麦的平均可消化CP含量几乎相似,分别为88.0 g和89.7 g kg(-1)。大麦及其混合物的体内能量和CP消化率可以通过体外值准确预测,因为这些方法在能量(r(2)= 0.93)和CP(r(2)= 0.87)之间具有很高的相关性)。

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