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通过一个欧洲乳制品网络开发傅里叶变换中红外校准方法以预测牛奶中的丙酮、β-羟基丁酸和柠檬酸盐含量。

Development of Fourier transform mid-infrared calibrations to predict acetone, β-hydroxybutyrate, and citrate contents in bovine milk through a European dairy network.

作者信息

Grelet C, Bastin C, Gelé M, Davière J-B, Johan M, Werner A, Reding R, Fernandez Pierna J A, Colinet F G, Dardenne P, Gengler N, Soyeurt H, Dehareng F

机构信息

Walloon Agricultural Research Center (CRA-W), Valorization of Agricultural Products Department, 24 Chaussée de Namur, 5030 Gembloux, Belgium.

University of Liège, Gembloux Agro-Bio Tech, Agriculture, Bio-engineering and Chemistry Department, 2 Passage des Déportés, 5030 Gembloux, Belgium.

出版信息

J Dairy Sci. 2016 Jun;99(6):4816-4825. doi: 10.3168/jds.2015-10477. Epub 2016 Mar 24.

Abstract

To manage negative energy balance and ketosis in dairy farms, rapid and cost-effective detection is needed. Among the milk biomarkers that could be useful for this purpose, acetone and β-hydroxybutyrate (BHB) have been proved as molecules of interest regarding ketosis and citrate was recently identified as an early indicator of negative energy balance. Because Fourier transform mid-infrared spectrometry can provide rapid and cost-effective predictions of milk composition, the objective of this study was to evaluate the ability of this technology to predict these biomarkers in milk. Milk samples were collected in commercial and experimental farms in Luxembourg, France, and Germany. Acetone, BHB, and citrate contents were determined by flow injection analysis. Milk mid-infrared spectra were recorded and standardized for all samples. After edits, a total of 548 samples were used in the calibration and validation data sets for acetone, 558 for BHB, and 506 for citrate. Acetone content ranged from 0.020 to 3.355mmol/L with an average of 0.103mmol/L; BHB content ranged from 0.045 to 1.596mmol/L with an average of 0.215mmol/L; and citrate content ranged from 3.88 to 16.12mmol/L with an average of 9.04mmol/L. Acetone and BHB contents were log-transformed and a part of the samples with low values was randomly excluded to approach a normal distribution. The 3 edited data sets were then randomly divided into a calibration data set (3/4 of the samples) and a validation data set (1/4 of the samples). Prediction equations were developed using partial least square regression. The coefficient of determination (R(2)) of cross-validation was 0.73 for acetone, 0.71 for BHB, and 0.90 for citrate with root mean square error of 0.248, 0.109, and 0.70mmol/L, respectively. Finally, the external validation was performed and R(2) obtained were 0.67 for acetone, 0.63 for BHB, and 0.86 for citrate, with respective root mean square error of validation of 0.196, 0.083, and 0.76mmol/L. Although the practical usefulness of the equations developed should be further verified with other field data, results from this study demonstrated the potential of Fourier transform mid-infrared spectrometry to predict citrate content with good accuracy and to supply indicative contents of BHB and acetone in milk, thereby providing rapid and cost-effective tools to manage ketosis and negative energy balance in dairy farms.

摘要

为了应对奶牛场的负能量平衡和酮血症问题,需要进行快速且经济高效的检测。在可能用于此目的的牛奶生物标志物中,丙酮和β-羟基丁酸(BHB)已被证明是与酮血症相关的重要分子,而柠檬酸盐最近被确定为负能量平衡的早期指标。由于傅里叶变换中红外光谱法能够对牛奶成分进行快速且经济高效的预测,本研究的目的是评估该技术预测牛奶中这些生物标志物的能力。在卢森堡、法国和德国的商业农场和实验农场采集了牛奶样本。通过流动注射分析测定丙酮、BHB和柠檬酸盐的含量。记录所有样本的牛奶中红外光谱并进行标准化处理。经过编辑后,丙酮校准和验证数据集共使用了548个样本,BHB使用了558个样本,柠檬酸盐使用了506个样本。丙酮含量范围为0.020至3.355mmol/L,平均为0.103mmol/L;BHB含量范围为0.045至1.596mmol/L,平均为0.215mmol/L;柠檬酸盐含量范围为3.88至16.12mmol/L,平均为9.04mmol/L。对丙酮和BHB含量进行对数转换,并随机排除一部分低值样本以使其接近正态分布。然后将这3个编辑后的数据集随机分为校准数据集(样本的3/4)和验证数据集(样本的1/4)。使用偏最小二乘回归建立预测方程。交叉验证的决定系数(R²)对于丙酮为0.73,对于BHB为0.71,对于柠檬酸盐为0.90,均方根误差分别为0.248、0.109和0.70mmol/L。最后进行外部验证,得到的丙酮R²为0.67,BHB为0.63,柠檬酸盐为0.86,各自的验证均方根误差为0.196、0.083和0.76mmol/L。尽管所建立方程的实际实用性应通过其他现场数据进一步验证,但本研究结果表明傅里叶变换中红外光谱法有潜力以良好的准确性预测柠檬酸盐含量,并提供牛奶中BHB和丙酮的指示性含量,从而为管理奶牛场的酮血症和负能量平衡提供快速且经济高效的工具。

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