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奶牛对反刍后精氨酸、异亮氨酸和缬氨酸供应变化的乳蛋白反应。

Milk protein responses in dairy cows to changes in postruminal supplies of arginine, isoleucine, and valine.

机构信息

INRA, UMR1348 Pegase, F-35590 Saint-Gilles, France.

出版信息

J Dairy Sci. 2013 Jan;96(1):420-30. doi: 10.3168/jds.2012-5610. Epub 2012 Nov 17.

Abstract

An ideal profile of essential AA (EAA) can improve the efficiency of metabolizable protein (or PDIE, the equivalent in the INRA feeding system) utilization in dairy cows. Compared with other EAA, existing recommendations for the requirements of Arg, Ile, and Val are few and inconsistent. Four multiparous Holstein dairy cows at 22±6 wk of lactation received 4 treatments (duodenal infusions of 445±22.4 g/d of an EAA mixture complementing a low-protein diet in a 4×4 Latin square design with a period length of 1 wk). The control treatment provided a balanced supply (in % of PDIE) of 5.1% Arg, 5.2% Ile, and 5.9% Val, whereas in the 3 subsequent treatments of -Arg, -Ile, and -Val, the concentrations of these 3 EAA were reduced to 3.5, 4.1, and 4.5%, respectively. All treatments were made isonitrogenous and were balanced to provide 7 other EAA (Lys, Met, His, Leu, Phe, Thr, and Trp), according to the recommendations described in the literature. Combined, the diet and the infusions provided 14.3±0.1% crude protein on a dry matter basis, and 66.0±1.2 g of PDIE/Mcal of net energy for lactation. Neither dry matter intake (19.2 kg/d) nor milk yield (30.4±0.4 kg/d) was affected by treatments. The -Arg and -Ile treatments did not modify milk protein synthesis or the efficiency of N utilization. However, the -Val treatment decreased milk protein content by 4.9% and milk crude protein content by 4.3%, and tended to decrease the efficiency of N use for milk protein yield by 3.7% (compared with the control). These effects of Val were related to a decrease in the plasma concentration of Val as well as a trend toward decreasing plasma concentrations of Met, His, and the sum of all EAA and nonessential AA in the -Val treatment, which indicates a different utilization of all AA in response to the Val deficit. The deletion of Ile, compared with the deletion of Val, tended to decrease the milk protein-to-fat ratio by 3.8%. In conclusion, the supply of Arg at 3.5% of PDIE was not limiting for milk protein synthesis. The slight effect on the milk protein-to-fat ratio caused by decreasing the supply of Ile suggests a need to reevaluate the Ile requirement more precisely. A low Val supply could be limiting for milk protein synthesis, provided that the requirements of Lys, Met, and His are met.

摘要

一种理想的必需氨基酸(EAA)组成可以提高奶牛可代谢蛋白(或 INRA 饲养系统中的 PDIE,等效物)的利用效率。与其他 EAA 相比,目前关于 Arg、Ile 和 Val 的需求建议很少且不一致。4 头处于泌乳期 22±6 周的荷斯坦奶牛接受了 4 种处理(十二指肠输注 445±22.4 g/d 的 EAA 混合物,以 4×4 拉丁方设计补充低蛋白饮食,周期长度为 1 周)。对照处理提供了(占 PDIE 的百分比)5.1%Arg、5.2%Ile 和 5.9%Val 的平衡供应,而在随后的 -Arg、-Ile 和 -Val 3 种处理中,这 3 种 EAA 的浓度分别降低至 3.5%、4.1%和 4.5%。所有处理均为等氮,并根据文献中描述的建议进行平衡,以提供 7 种其他 EAA(Lys、Met、His、Leu、Phe、Thr 和 Trp)。饮食和输注物共同提供 14.3±0.1%粗蛋白(干物质基础)和 66.0±1.2 g PDIE/Mcal 净能用于泌乳。处理对干物质摄入量(19.2 kg/d)或牛奶产量(30.4±0.4 kg/d)均无影响。-Arg 和 -Ile 处理均未改变牛奶蛋白合成或氮利用效率。然而,-Val 处理使牛奶蛋白含量降低了 4.9%,牛奶粗蛋白含量降低了 4.3%,并倾向于使用于牛奶蛋白产量的氮利用效率降低 3.7%(与对照相比)。这些 Val 的影响与 Val 血浆浓度降低以及 Met、His 和所有 EAA 和非必需 AA 血浆浓度降低的趋势有关,这表明对 Val 缺乏的所有 AA 的利用不同。与 Val 相比,Ile 的缺失倾向于使牛奶蛋白与脂肪的比例降低 3.8%。总之,PDIE 中 Arg 的供应量为 3.5%,不会限制牛奶蛋白合成。Ile 供应量减少对牛奶蛋白与脂肪比例的轻微影响表明,需要更准确地重新评估 Ile 的需求。如果满足 Lys、Met 和 His 的需求,低 Val 供应可能会限制牛奶蛋白合成。

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