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生物乙醇厂和副产物类型对奶牛蛋白质代谢特性的影响。

Effects of bioethanol plant and coproduct type on the metabolic characteristics of the proteins in dairy cattle.

机构信息

Department of Animal and Poultry Science, College of Agriculture and Bioresources, University of Saskatchewan, Saskatoon, SK S7N 5A8, Canada.

出版信息

J Dairy Sci. 2010 Aug;93(8):3775-83. doi: 10.3168/jds.2010-3143.

Abstract

The dramatic increase in bioethanol production in Canada has resulted in millions of tonnes of different types of coproducts: wheat dried distillers grains with solubles (DDGS), corn DDGS, and blend DDGS (e.g., wheat:corn 70:30). The objectives of this study were 1) to investigate the effect of DDGS type and bioethanol plant on the metabolic characteristics of the proteins and the total truly digested and absorbed protein supply to dairy cattle using the DVE/OEB system and 2) to compare the metabolic characteristics of the proteins of original feedstock grains with their respective derived DDGS samples. The results showed that all types of DDGS are a good source of the truly digested and absorbed protein in the small intestine [DVE; 107 vs. 249 g/kg of dry matter (DM) for wheat and wheat DDGS; 108 vs. 251 g/kg of DM for corn and corn DDGS]. According to the DVE/OEB system, the predicted total DVE supply to dairy cattle differed among wheat DDGS (DVE=249 g/kg of DM), corn DDGS (DVE=251 g/kg of DM), and blend DDGS (DVE=281 g/kg of DM) and, to a lesser extent, between the different bioethanol plants (DVE: 277 vs. 230 g/kg of DM for bioethanol plants 1 and 2). The results indicated the superior protein value of blend DDGS as well as that of the more optimum degraded protein balance (DPB) value for corn DDGS (DPB: 11 g/kg of DM in corn DDGS vs. 72 g/kg of DM in wheat DDGS and 55 g/kg of DM in blend DDGS). In addition, differences in the acid detergent-insoluble crude protein content of wheat DDGS samples were reflected in differing protein DVE values. In conclusion, it is inappropriate to assume fixed protein values for DDGS without considering factors such as DDGS type and bioethanol plant origin.

摘要

加拿大生物乙醇产量的急剧增加导致了数百万吨不同类型的副产物

小麦干酒糟及其可溶物(DDGS)、玉米 DDGS 和混合 DDGS(例如,小麦:玉米 70:30)。本研究的目的是:1)使用 DVE/OEB 系统研究 DDGS 类型和生物乙醇工厂对蛋白质的代谢特性以及向奶牛提供的总可消化和可吸收蛋白质供应的影响;2)比较原始饲料谷物的蛋白质的代谢特性及其各自的衍生 DDGS 样品。结果表明,所有类型的 DDGS 都是小肠中可消化和可吸收蛋白质的良好来源[DVE;小麦和小麦 DDGS 为 107 与 249 g/kg 干物质(DM);玉米和玉米 DDGS 为 108 与 251 g/kg DM]。根据 DVE/OEB 系统,不同 DDGS 向奶牛提供的预测总 DVE 供应存在差异,其中小麦 DDGS(DVE=249 g/kg DM)、玉米 DDGS(DVE=251 g/kg DM)和混合 DDGS(DVE=281 g/kg DM)之间存在差异,并且在不同的生物乙醇工厂之间差异较小(DVE:生物乙醇工厂 1 和 2 分别为 277 与 230 g/kg DM)。结果表明,混合 DDGS 的蛋白质价值更高,玉米 DDGS 的蛋白质降解平衡(DPB)值更优(玉米 DDGS 为 11 g/kg DM,而小麦 DDGS 为 72 g/kg DM,混合 DDGS 为 55 g/kg DM)。此外,小麦 DDGS 样品中酸洗涤剂不溶粗蛋白含量的差异反映在不同的蛋白质 DVE 值上。总之,如果不考虑 DDGS 类型和生物乙醇工厂来源等因素,对 DDGS 采用固定的蛋白质值是不合适的。

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