Capuano Edoardo, van der Veer Grishja, Boerrigter-Eenling Rita, Elgersma Anjo, Rademaker Jan, Sterian Adriana, van Ruth Saskia M
RIKILT - Institute of Food Safety, Wageningen University and Research Centre, P.O. Box 230, 6700 AE Wageningen, The Netherlands.
RIKILT - Institute of Food Safety, Wageningen University and Research Centre, P.O. Box 230, 6700 AE Wageningen, The Netherlands.
Food Chem. 2014 Dec 1;164:234-41. doi: 10.1016/j.foodchem.2014.05.011. Epub 2014 May 15.
The present study investigated the use of fatty acid (FA) profiling in combination with chemometric modelling to verify claims for cow milk in terms of fresh grass feeding, pasture grazing and organic/biodynamic farming. The FA profile was determined for 113 tank milk samples collected in the Netherlands from 30 farms over four different months, and used to develop classification models based on the PLS-DA algorithm. Milk from cows with daily rations of fresh grass could be successfully distinguished from milk from cows with no fresh grass in their diet. Milk from cows at pasture could easily be distinguished from milk from stabled cows without fresh grass in the diet, but the correct prediction of milk from stabled cows fed fresh grass indoors proved difficult. The FA profile of organic/biodynamic milk was different compared to conventional milk but an unequivocal discrimination was not possible either in summer or in winter.
本研究调查了脂肪酸(FA)谱分析与化学计量学建模相结合的方法,以验证关于牛奶在新鲜牧草喂养、牧场放牧以及有机/生物动力养殖方面的说法。对从荷兰30个农场在四个不同月份采集的113份罐装牛奶样本测定了脂肪酸谱,并用于基于偏最小二乘判别分析(PLS-DA)算法开发分类模型。日粮中有新鲜牧草的奶牛所产牛奶能够成功地与日粮中没有新鲜牧草的奶牛所产牛奶区分开来。牧场奶牛所产牛奶能够很容易地与圈养且日粮中没有新鲜牧草的奶牛所产牛奶区分开来,但事实证明,要正确预测室内饲喂新鲜牧草的圈养奶牛所产牛奶却很困难。有机/生物动力牛奶的脂肪酸谱与传统牛奶不同,但无论是在夏季还是冬季,都无法进行明确的区分。