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乳脂肪酸作为奶牛泌乳早期能量负平衡的指示物。

Milk fatty acids as indicators of negative energy balance of dairy cows in early lactation.

机构信息

Department of Animal Nutrition and Management, Swedish University of Agricultural Sciences (SLU), Box 7024, SE-750 07 Uppsala, Sweden; Beijer Laboratory for Animal Science, Swedish University of Agricultural Sciences (SLU), Box 7024, SE-750 07 Uppsala, Sweden.

Department of Animal Nutrition and Management, Swedish University of Agricultural Sciences (SLU), Box 7024, SE-750 07 Uppsala, Sweden.

出版信息

Animal. 2021 Jul;15(7):100253. doi: 10.1016/j.animal.2021.100253. Epub 2021 Jun 2.

Abstract

Most dairy cows experience negative energy balance (NEB) in early lactation because energy demand for milk synthesis is not met by energy intake. Excessive NEB may lead to metabolic disorders and impaired fertility. To optimize herd management, it is useful to detect cows in NEB in early lactation, but direct calculation of NEB is not feasible in commercial herds. Alternative methods rely on fat-to-protein ratio in milk or on concentrations of non-esterified fatty acids (NEFA) and β-hydroxybutyrate (BHB) in blood. Here, we considered methods to assess energy balance (EB) of dairy cows based on the fatty acid (FA) composition in milk. Short- and medium-chain FAs (primarily, C14:0) are typically synthesized de novo in the mammary gland and their proportions in milk fat decrease during NEB. Long-chain FAs C18:0 and C18:1 cis-9 are typically released from body fat depots during NEB, and their proportions increase. In this study, these FAs were routinely determined by Fourier-transform infrared spectroscopy (FTIR) of individual milk samples. We performed an experiment on 85 dairy cows in early lactation, fed the same concentrate ration of up to 5 kg per day and forage ad libitum. Daily milk yield and feed intake were automatically recorded. During lactation weeks 2, 4, and 6 after calving, two milk samples were collected for FTIR spectroscopy, Tuesday evening and Wednesday morning, blood plasma samples were collected Thursday morning. Net energy content in feed and net energy required for maintenance and lactation were estimated to derive EB, which was used to compare alternative indicators of severe NEB. Linear univariate models for EB based on NEFA concentration (deviance explained = 0.13) and other metabolites in blood plasma were outperformed by models based on concentrations of metabolites in milk: fat (0.27), fat-to-protein ratio (0.18), BHB (0.20), and especially C18:0 (0.28) and C18:1 cis-9 (0.39). Analysis of generalized additive models (GAM) revealed that models based on milk variables performed better than those based on blood plasma (deviance explained 0.46 vs. 0.21). C18:0 and C18:1 cis-9 also performed better in severe NEB prediction for EB cut-off values ranging from -50 to 0 MJ NEL/d. Overall, concentrations of C18:0 and C18:1 cis-9 in milk, milk fat, and milk BHB were the best variables for early detection of cows in severe NEB. Thus, milk FA concentrations in whole milk can be useful to identify NEB in early-lactation cows.

摘要

大多数奶牛在泌乳早期都会经历负的能量平衡(NEB),因为能量需求无法通过能量摄入来满足。过量的 NEB 可能导致代谢紊乱和繁殖力受损。为了优化牛群管理,在泌乳早期检测到处于 NEB 的奶牛是很有用的,但在商业牛群中直接计算 NEB 是不可行的。替代方法依赖于牛奶中的脂肪-蛋白质比例或非酯化脂肪酸(NEFA)和β-羟丁酸(BHB)的浓度。在这里,我们考虑了基于牛奶中脂肪酸(FA)组成评估奶牛能量平衡(EB)的方法。短链和中链 FAs(主要是 C14:0)通常在乳腺中从头合成,它们在乳脂中的比例在 NEB 期间下降。长链 FAs C18:0 和 C18:1 cis-9 在 NEB 期间通常从体脂库中释放出来,其比例增加。在这项研究中,通过个体牛奶样本的傅里叶变换红外光谱(FTIR)常规测定这些 FA。我们对 85 头处于泌乳早期的奶牛进行了一项实验,这些奶牛每天最多喂食 5 公斤的相同浓缩饲料,自由采食草料。每天的牛奶产量和饲料摄入量自动记录。产后第 2、4 和 6 周的泌乳周,采集两份牛奶样本进行 FTIR 光谱分析,星期二晚上和星期三早上,采集星期四早上的血浆样本。估计饲料的净能含量和维持和泌乳所需的净能,以得出 EB,用于比较严重 NEB 的替代指标。基于 NEFA 浓度(解释方差 0.13)和血液中其他代谢物的 EB 的线性单变量模型优于基于牛奶中代谢物浓度的模型:脂肪(0.27)、脂肪-蛋白质比(0.18)、BHB(0.20),尤其是 C18:0(0.28)和 C18:1 cis-9(0.39)。广义加性模型(GAM)分析表明,基于牛奶变量的模型比基于血液血浆的模型表现更好(解释方差为 0.46 比 0.21)。对于范围从-50 到 0 MJ NEL/d 的 EB 截断值,C18:0 和 C18:1 cis-9 也能更好地预测严重的 NEB。总体而言,牛奶中的 C18:0 和 C18:1 cis-9 浓度、乳脂和乳 BHB 是早期检测严重 NEB 奶牛的最佳变量。因此,全脂牛奶中的乳 FA 浓度可用于识别泌乳早期奶牛的 NEB。

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