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瘤后供应的葡萄糖和酪蛋白,但不是乙酸盐,通过对乳腺代谢的不同影响来刺激奶牛的乳蛋白合成。

Post-ruminal supplies of glucose and casein, but not acetate, stimulate milk protein synthesis in dairy cows through differential effects on mammary metabolism.

机构信息

Department of Animal Science, University of Lavras, Lavras, 37200, Brazil.

Department of Dairy Science, Virginia Tech, Blacksburg 24061.

出版信息

J Dairy Sci. 2020 Jul;103(7):6218-6232. doi: 10.3168/jds.2019-18086. Epub 2020 May 14.

Abstract

Amino acids and glucose have been shown to regulate protein synthesis in the mammary gland through their effects on cellular signaling pathways. Acetate might also have an effect on protein synthesis via the AMP-activated kinase signaling pathway, because it is the main energy source for the mammary secretory cell. Thus, the objective of this experiment was to evaluate the effects of casein and energy-yielding nutrients (acetate and glucose), and their combination, on performance and mammary metabolism. Six multiparous Holstein cows, averaging 49 kg of milk/d, were used in a 6 × 6 Latin square design with 14-d periods. Cows were fed to 100% National Research Council requirements for metabolizable protein (MP) and energy (ME) for 9 d, after which they were feed-restricted for 5 d to 85% of their individual ad libitum intake and then abomasally infused with 1 of 6 treatments. Treatments were acetate (A), glucose (G), each at 5% of ad libitum ME intake, casein (C) at 15% of ad libitum MP intake, A + C, G + C, or a saline solution (negative control). Casein infused alone increased milk protein yield numerically, with 25% recovery of the infused casein in milk protein. Glucose infused alone increased milk and milk protein yield and promoted the highest efficiency of nitrogen utilization (37%), with an efficiency of MP use for milk protein of 58%. We discovered no effect of treatment on mammary plasma flow, and the increase in milk protein yield with glucose infusion was brought about by greater mammary AA clearance rate. Infusion of casein and glucose together further increased milk protein yield in an additive fashion, and 47% of the infused casein was recovered in milk protein. Acetate infused alone had no effect on milk protein yield but increased milk fat yield numerically, suggesting that the greater amount of acetate taken up by the mammary gland was used for milk fat synthesis. Infusion of acetate and casein together yielded responses similar to those of casein alone. In conclusion, glucose has a major effect on stimulating milk protein synthesis, and the mammary gland has the ability to increase its supply of nutrients to match its synthetic capacity.

摘要

氨基酸和葡萄糖已被证明通过其对细胞信号通路的影响来调节乳腺中的蛋白质合成。乙酸盐也可能通过 AMP 激活的激酶信号通路对蛋白质合成产生影响,因为它是乳腺分泌细胞的主要能量来源。因此,本实验的目的是评估酪蛋白和产能营养素(乙酸盐和葡萄糖)及其组合对产奶性能和乳腺代谢的影响。使用 6 头具有 49kg/d 泌乳量的经产荷斯坦奶牛,采用 6×6 拉丁方设计,每个周期 14d。奶牛按照美国国家研究委员会(NRC)规定的代谢蛋白(MP)和能量(ME)需要量的 100%饲喂 9d,然后限制采食量 5d 至其自身随意采食量的 85%,然后通过瘤胃灌注 6 种处理之一。处理分别为乙酸盐(A)、葡萄糖(G),分别为随意 ME 采食量的 5%,酪蛋白(C)为随意 MP 采食量的 15%,A+C、G+C 或生理盐水(阴性对照)。单独灌注酪蛋白可使产奶蛋白产量略有增加,其中 25%的灌注酪蛋白回收于乳蛋白中。单独灌注葡萄糖可增加产奶量和乳蛋白产量,并提高氮利用效率的最高值(37%),用于产奶蛋白的 MP 利用率为 58%。我们发现处理对乳腺血流无影响,并且葡萄糖灌注增加乳蛋白产量是由于乳腺 AA 清除率增加。单独灌注酪蛋白和葡萄糖可进一步累加增加乳蛋白产量,其中 47%的灌注酪蛋白回收于乳蛋白中。单独灌注乙酸盐对乳蛋白产量无影响,但产奶量略有增加,表明乳腺吸收的更多乙酸盐用于乳脂合成。单独灌注乙酸盐和酪蛋白的效果与单独灌注酪蛋白相似。总之,葡萄糖对刺激乳蛋白合成有重要作用,乳腺具有增加其养分供应以匹配其合成能力的能力。

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