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围产期营养供应改变荷斯坦奶牛犊牛血清代谢组学特征与蛋白质和能量代谢及肝功能有关。

Preweaning nutrient supply alters serum metabolomics profiles related to protein and energy metabolism and hepatic function in Holstein heifer calves.

机构信息

Trouw Nutrition Research and Development, P.O. Box 299, 3800 AG, Amersfoort, the Netherlands.

Trouw Nutrition Research and Development, P.O. Box 299, 3800 AG, Amersfoort, the Netherlands.

出版信息

J Dairy Sci. 2021 Jul;104(7):7711-7724. doi: 10.3168/jds.2020-19867. Epub 2021 Apr 23.

Abstract

Lifting the preweaning milk restriction in dairy calves has been causally associated with beneficial effects on growth and future lactation performance. However, the biological mechanisms linking early-life nutrient supply and future performance remain insufficiently understood. Thus, the objective of this study was to characterize growth and the metabolic profiles of calves fed a restricted (RES) and an elevated (ELE) milk supply preweaning. A total of 86 female Holstein Friesian calves were blocked in pairs by maternal parity and received identical colostrum supply within block. Treatments randomized within block consisted of a milk replacer (MR; 24% crude protein, 18% crude fat, and 45% lactose) supplied at either 5.41 Mcal of ME in 8 L of MR/d (ELE) or 2.71 Mcal of ME in 4 L of MR/d (RES) from d 2 after birth until they were stepped down by 50% during wk 7 and fully weaned at wk 8. All calves had ad libitum access to pelleted calf starter (17.3% crude protein, 24.4% neutral detergent fiber, 2.0% crude fat, and 18.2% starch), chopped wheat straw, and water. At 2 and 49 d of age, blood samples were taken for metabolomics analysis. The ELE group by design consumed more milk replacer, resulting in a lower starter intake and a greater body weight and average daily gain. The ELE calves consumed 20.7% more ME and 9.7% more crude protein. However, efficiency of growth was not different between groups. Metabolomic profiling using 908 identified metabolites served to characterize treatment-dependent biochemical differences. Principal component analysis revealed clearly distinct metabolic profiles at 49 d of age in response to preweaning milk supply. Changes in energy (fatty acid metabolism and tricarboxylic acid metabolites), protein (free AA, dipeptides, and urea cycle), and liver metabolism (bile acid and heme metabolism) were the main effects associated with the dietary differences. The ELE group consumed proportionately more glucogenic nutrients via milk replacer, whereas the RES group consumed proportionately more ketogenic nutrients from the digestion of the calf starter, comprising a larger portion of total intake. Associated with the higher growth rate of the ELE group, hepatic changes were expressed as differences in bile acid and heme metabolism. Furthermore, energy metabolism differences were noted in fatty acid and AA metabolism and the urea cycle. The metabolic profile differences between the ELE and RES groups reflect the broad differences in nutrient intake and diet composition and might point to which metabolic processes are responsible for greater dairy performance for cows fed a greater milk supply preweaning.

摘要

在犊牛哺乳期内取消牛奶限制与生长和未来泌乳性能的有益影响有关。然而,将早期营养供应与未来性能联系起来的生物学机制仍知之甚少。因此,本研究的目的是描述接受限制(RES)和提高(ELE)牛奶供应的犊牛的生长和代谢特征。86 头荷斯坦弗里生雌性犊牛按母本胎次分为两组,在组内接受相同的初乳供应。组内随机处理由代乳料(MR;24%粗蛋白、18%粗脂肪和 45%乳糖)组成,ELE 组每天提供 8 L 的 MR,含 5.41 Mcal ME,RES 组每天提供 4 L 的 MR,含 2.71 Mcal ME,从出生后第 2 天开始,直到第 7 周减少 50%,第 8 周完全断奶。所有犊牛均可自由采食颗粒状犊牛饲料(17.3%粗蛋白、24.4%中性洗涤纤维、2.0%粗脂肪和 18.2%淀粉)、切碎的小麦秸秆和水。在 2 和 49 日龄时,采集血液样本进行代谢组学分析。ELE 组设计上消耗更多的代乳料,导致更少的犊牛饲料摄入、更大的体重和更高的平均日增重。ELE 犊牛消耗的 ME 和粗蛋白分别多 20.7%和 9.7%。然而,两组之间的生长效率没有差异。使用 908 种鉴定代谢物的代谢组学分析用于描述与预奶供应相关的处理依赖性生化差异。主成分分析显示,在 49 日龄时,由于预奶供应的不同,代谢谱明显不同。能量(脂肪酸代谢和三羧酸代谢物)、蛋白质(游离氨基酸、二肽和尿素循环)和肝脏代谢(胆汁酸和血红素代谢)的变化是与饮食差异相关的主要效应。ELE 组通过代乳料摄入更多的生糖营养素,而 RES 组通过消化犊牛饲料摄入更多的生酮营养素,占总摄入量的比例更大。与 ELE 组更高的生长速度相关,肝脏变化表现为胆汁酸和血红素代谢的差异。此外,在脂肪酸和氨基酸代谢以及尿素循环中也观察到能量代谢差异。ELE 和 RES 组之间的代谢谱差异反映了营养摄入和饮食组成的广泛差异,可能表明哪些代谢过程负责提高预奶供应的奶牛的产奶性能。

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