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日粮补充叶酸和维生素B12对初产奶牛代谢的影响。

Effects of dietary supplements of folic acid and vitamin B12 on metabolism of dairy cows in early lactation.

作者信息

Graulet B, Matte J J, Desrochers A, Doepel L, Palin M-F, Girard C L

机构信息

Agriculture et Agroalimentaire Canada, Centre de recherche et développement sur le bovin laitier et le porc, Sherbrooke, Québec, J1M 1Z3 Canada.

出版信息

J Dairy Sci. 2007 Jul;90(7):3442-55. doi: 10.3168/jds.2006-718.

Abstract

The present experiment was undertaken to determine the effects of dietary supplements of folic acid and vitamin B12 given from 3 wk before to 8 wk after calving on lactational performance and metabolism of 24 multiparous Holstein cows assigned to 6 blocks of 4 cows each according to their previous milk production. Supplementary folic acid at 0 or 2.6 g/d and vitamin B12 at 0 or 0.5 g/d were used in a 2 x 2 factorial arrangement. Supplementary folic acid increased milk production from 38.0 +/- 0.9 to 41.4 +/- 1.0 kg/d and milk crude protein yield from 1.17 +/- 0.02 to 1.25 +/- 0.03 kg/d. It also increased plasma Gly, Ser, Thr, and total sulfur AA, decreased Asp, and tended to increase plasma Met. Supplementary B12 decreased milk urea N, plasma Ile, and Leu and tended to decrease Val but increased homocysteine, Cys, and total sulfur AA. Liver concentration of phospholipids was higher in cows fed supplementary B12. Plasma and liver concentrations of folates and B12 were increased by their respective supplements, but the increase in plasma folates and plasma and liver B12 was smaller for cows fed the 2 vitamins together. In cows fed folic acid supplements, supplementary B12 increased plasma glucose and alanine, tended to decrease plasma biotin, and decreased Km of the methylmalonyl-coenzyme A mutase in hepatic tissues following addition of deoxyadenosylcobalamin, whereas it had no effect when cows were not fed folic acid supplements. There was no treatment effect on plasma nonesterified fatty acids as well as specific activity and gene expression of Met synthase and methylmalonyl-coenzyme A mutase in the liver. Ingestion of folic acid supplements by cows fed no supplementary B12 increased total lipid and triacylglycerols in liver, whereas these supplements had no effect in cows supplemented with B12. The increases in milk and milk protein yields due to folic acid supplements did not seem to be dependent on the vitamin B12 supply. However, when vitamin B12 was given in combination with folic acid, utilization of the 2 vitamins seems to be increased, probably more so in extrahepatic tissues. Metabolic efficiency seems also to be improved as suggested by similar lactational performance and dry matter intake for cows fed supplementary folic acid but increased plasma glucose and decreased hepatic lipids in cows fed folic acid and vitamin B12 together.

摘要

本试验旨在确定在产犊前3周直至产犊后8周补充叶酸和维生素B12对24头经产荷斯坦奶牛泌乳性能和代谢的影响。这些奶牛根据之前的产奶量被分为6个区组,每个区组4头。采用2×2析因设计,分别补充0或2.6 g/d的叶酸以及0或0.5 g/d的维生素B12。补充叶酸使牛奶产量从38.0±0.9 kg/d增加至41.4±1.0 kg/d,牛奶粗蛋白产量从1.17±0.02 kg/d增加至1.25±0.03 kg/d。同时,血浆甘氨酸、丝氨酸、苏氨酸和总含硫氨基酸增加,天冬氨酸减少,血浆蛋氨酸有增加趋势。补充维生素B12降低了牛奶尿素氮、血浆异亮氨酸和亮氨酸,缬氨酸有减少趋势,但高半胱氨酸、半胱氨酸和总含硫氨基酸增加。补充维生素B12的奶牛肝脏磷脂浓度较高。各自的补充剂使血浆和肝脏中的叶酸和维生素B12浓度增加,但同时补充两种维生素的奶牛血浆叶酸以及血浆和肝脏维生素B12的增加幅度较小。在补充叶酸的奶牛中,补充维生素B12增加了血浆葡萄糖和丙氨酸,血浆生物素呈减少趋势,添加脱氧腺苷钴胺后肝脏组织中甲基丙二酰辅酶A变位酶的米氏常数降低,而在未补充叶酸的奶牛中则无此作用。对血浆非酯化脂肪酸以及肝脏中蛋氨酸合酶和甲基丙二酰辅酶A变位酶的比活性和基因表达没有处理效应。未补充维生素B12的奶牛摄入叶酸补充剂会增加肝脏中的总脂质和三酰甘油,而这些补充剂对补充维生素B12的奶牛没有影响。叶酸补充剂导致的牛奶和牛奶蛋白产量增加似乎不依赖于维生素B12的供应。然而,当维生素B12与叶酸联合使用时,两种维生素的利用率似乎会提高,可能在肝外组织中更为明显。代谢效率似乎也有所提高,这表现为补充叶酸的奶牛泌乳性能和干物质摄入量相似,但同时补充叶酸和维生素B12的奶牛血浆葡萄糖增加而肝脏脂质减少。

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