Research Institute for Organic Agriculture (FiBL), Ackerstrasse, 5070 Frick, Switzerland.
Department of Nutritional Physiology, Institute of Nutrition, Friedrich Schiller University Jena, Dornburger Straße 24, 07743 Jena, Germany; Competence Cluster for Nutrition and Cardiovascular Health (nutriCARD), Halle-Jena-Leipzig, Dornburger Straße 25, 07743 Jena, Germany.
J Dairy Sci. 2019 Mar;102(3):2698-2702. doi: 10.3168/jds.2018-15425. Epub 2019 Jan 26.
Horns are living tissue and cows can use their horns for thermoregulatory purposes. We investigated the effect of the presence of horns on the metabolome of milk serum and lipidome of milk fat, to assess the physiological effect of dehorning. Milk sampling took place at low ambient temperatures of -6 to 2°C. Horned and dehorned cows were kept in a mixed herd of Holstein Friesian and Brown Swiss cows. The hypothesis was that horned cows needed to increase their metabolism to compensate for additional heat loss through the presence of their horns. No differences were observed in milk yield, milk solids, and somatic cell counts between horned and dehorned cows. For the milk metabolome, horned cows showed an upregulation of several glucogenic AA that could be transformed into glucose for energy supply and a downregulation of sugar intermediates and γ-glutamylcysteine compared with dehorned cows. The fatty acid (FA) composition in horned cows showed a shift toward decreased odd medium-chain FA (C7:0, C9:0, and C11:0) and increased cis-vaccenic acid (C18:1n-7 cis-11) and stearidonic acid (C18:4n-3). The changes in milk composition related to additional heat loss in horned cows indicate a competition in C3 metabolism for glucose synthesis and de novo FA synthesis under cold stress.
角是有生命的组织,奶牛可以利用它们的角来调节体温。我们研究了角的存在对牛奶血清代谢组和牛奶脂肪脂质组的影响,以评估去角对生理的影响。牛奶采样在环境温度低至-6 至 2°C 的情况下进行。有角和无角的奶牛被饲养在荷斯坦弗里森牛和瑞士褐牛的混合牛群中。假设有角的奶牛需要增加新陈代谢,以弥补通过角额外损失的热量。有角和无角的奶牛在牛奶产量、牛奶固体和体细胞计数方面没有差异。对于牛奶代谢组学,有角的奶牛表现出几种生糖氨基酸的上调,这些氨基酸可以转化为葡萄糖提供能量,以及糖中间产物和γ-谷氨酰半胱氨酸的下调,与去角的奶牛相比。有角奶牛的脂肪酸 (FA) 组成显示出奇数中链 FA(C7:0、C9:0 和 C11:0)减少和顺式vaccenic 酸(C18:1n-7 cis-11)和 stearidonic 酸(C18:4n-3)增加的趋势。有角奶牛牛奶成分的变化与额外的热损失有关,表明在冷应激下,C3 代谢中葡萄糖合成和从头 FA 合成之间存在竞争。