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Effects of graded removal of lysine from an intravenously infused amino acid mixture on lactation performance and mammary amino acid metabolism in lactating goats

机译:从静脉内注入氨基酸混合物中逐步去除赖氨酸对泌乳山羊泌乳性能和乳腺氨基酸代谢的影响

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摘要

To investigate responses of milk protein synthesis and mammary AA metabolism to a graded decrease of postruminal Lys supply, 4 lactating goats fitted with jugular vein, mammary vein, and carotid artery catheters and transonic blood flow detectors on the external pudic artery were used in a 4 × 4 Latin square experiment. Goats were fasted for 24 h and then received a 9-h intravenous infusion of an AA mixture plus glucose. Milk yield was recorded and samples were taken in h 2 to 8 of the infusion period; a mammary biopsy was performed in the last hour. Treatments were graded decrease of lysine content in the infusate to 100 (complete), 60, 30, or 0% as in casein. Lysine-removed infusions linearly decreased milk yield, tended to decrease lactose yield, and tended to increase milk fat to protein ratio. Milk protein content and yield were linearly decreased by graded Lys deficiency. Mammary Lys uptake was concomitantly decreased, but linear regression analysis found no significant relationship between mammary Lys uptake and milk protein yield. Treatments had no effects on phosphorylation levels of the downstream proteins measured in the mammalian target or rapamycin pathway except for a tended quadratic effect on that of eukaryotic initiation factor 2, which was increased and then decreased by graded Lys deficiency. Removal of Lys from the infusate linearly increased circulating glucagon and glucose. Removal of Lys from the infusate linearly decreased arterial and venous concentrations of Lys. Treatments also had a significant quadratic effect on venous Lys, suggesting mechanisms to stabilize circulating Lys at a certain range. The 2 infusions partially removing Lys resulted in a similar 20% decrease, whereas the 0% Lys infusion resulted in an abrupt 70% decrease in mammary Lys uptake compared with that of the full-AA mixture infusion. Consistent with the abrupt decrease, mammary Lys uptake-to-output ratio decreased from 2.2 to 0.92, suggesting catabolism of Lys in the mammary gland could be completely prevented when the animal faced severe Lys deficiency. Mammary blood flow was linearly increased, consistent with the linearly increased circulating nitric oxide by graded Lys deficiency, indicating mechanisms to ensure the priority of the mammary gland in acquiring AA for milk protein synthesis. Infusions with Lys removed increased mammary clearance rate of Lys numerically by 2 to 3 fold. In conclusion, the decreased milk protein yield by graded Lys deficiency was mainly a result of the varied physiological status, as indicated by the elevated circulating glucagon and glucose, rather than a result of the decreased mammary Lys uptake or depressed signals in the mTOR pathway. Mechanisms of Lys deficiency to promote glucagon secretion and mammary blood flow and glucagon to depress milk protein synthesis need to be clarified by future studies.
机译:为了研究乳蛋白合成和乳腺AA代谢对瘤胃后Lys供给量的逐渐降低的反应,在4例中使用了4头装有颈静脉,乳腺静脉和颈动脉导管以及跨声门血流检测器的哺乳山羊×4拉丁方实验。山羊禁食24小时,然后静脉注射AA混合物加葡萄糖9小时。记录牛奶产量,并在输液期的2至8小时内取样;在最后一个小时进行了乳腺活检。按照酪蛋白的情况,将治疗液中的赖氨酸含量降低至100%(完全),60%,30%或0%。去除赖氨酸的输液线性降低了牛奶产量,倾向于降低乳糖产量,并且倾向于增加牛奶脂肪与蛋白质的比例。分级的赖氨酸缺乏症使牛奶蛋白质含量和产量线性下降。乳腺Lys的摄取随之减少,但是线性回归分析发现乳腺Lys的摄取与乳蛋白产量之间没有显着关系。除对真核生物起始因子2趋向于二次影响外,治疗对哺乳动物靶标或雷帕霉素途径中下游蛋白的磷酸化水平没有影响,但随着分级的赖氨酸缺乏而增加然后减少。从输注液中去除Lys会线性增加循环胰高血糖素和葡萄糖。从输注液中去除Lys会线性降低Lys的动静脉浓度。治疗对静脉Lys也具有明显的二次效应,提示将循环Lys稳定在一定范围的机制。与完全AA混合物输注相比,部分消除Lys的2次输注导致相似的20%降低,而0%Lys输注导致乳腺Lys吸收突然降低70%。与突然下降相一致,乳腺的Lys吸收-输出比从2.2降低至0.92,这表明当动物面临严重的Lys缺乏症时,乳腺中Lys的分解代谢可以完全被阻止。乳腺血流呈线性增加,与通过分级的Lys缺乏症线性增加的循环一氧化氮一致,表明机制可确保确保乳腺在获得用于乳蛋白合成的氨基酸中的优先权。去除Lys的输注将Lys的乳腺清除率从数字上提高了2到3倍。总之,分级的Lys缺乏症导致的乳蛋白产量下降主要是由于生理状态的变化所致,如循环胰高血糖素和葡萄糖的升高所表明的,而不是由于mTOR途径中的乳腺Lys摄取减少或信号降低所致。赖氨酸缺乏促进胰高血糖素分泌和乳腺血流的机制,以及胰高血糖素抑制乳蛋白合成的机制有待进一步研究阐明。

著录项

  • 来源
    《Journal of dairy science》 |2017年第6期|4552-4564|共13页
  • 作者单位

    Ruminant Nutrition and Physiology Laboratory, College of Animal Science and Technology, Shandong Agricultural University, Taian 271018, P. R. China;

    Ruminant Nutrition and Physiology Laboratory, College of Animal Science and Technology, Shandong Agricultural University, Taian 271018, P. R. China;

    Ruminant Nutrition and Physiology Laboratory, College of Animal Science and Technology, Shandong Agricultural University, Taian 271018, P. R. China;

    Department of Dairy Science, Virginia Tech, Blacksburg 24061;

    Ruminant Nutrition and Physiology Laboratory, College of Animal Science and Technology, Shandong Agricultural University, Taian 271018, P. R. China;

    Ruminant Nutrition and Physiology Laboratory, College of Animal Science and Technology, Shandong Agricultural University, Taian 271018, P. R. China;

    Ruminant Nutrition and Physiology Laboratory, College of Animal Science and Technology, Shandong Agricultural University, Taian 271018, P. R. China;

    Ruminant Nutrition and Physiology Laboratory, College of Animal Science and Technology, Shandong Agricultural University, Taian 271018, P. R. China;

    Ruminant Nutrition and Physiology Laboratory, College of Animal Science and Technology, Shandong Agricultural University, Taian 271018, P. R. China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    goat; lactation; lysine; milk protein;

    机译:山羊;哺乳期赖氨酸牛奶蛋白;

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