食品科学 ›› 2025, Vol. 46 ›› Issue (21): 219-226.doi: 10.7506/spkx1002-6630-20250514-079

• 成分分析 • 上一篇    

娟姗牛乳脂肪酸组成特征及其与荷斯坦牛乳的差异

唐烁,刘春霞,胡文慧,梁建英,岳虹,黄晓燕,吕志勇,段国霞,刘丽君,胡雪,吴晓莉   

  1. (1.内蒙古伊利实业集团股份有限公司,内蒙古?呼和浩特 010110;2.国家市场监管重点实验室(牛羊乳肉制品风险防控与关键技术),内蒙古?呼和浩特 010110)
  • 发布日期:2025-11-10
  • 基金资助:
    内蒙古自治区重点研发与成果转化计划项目(2023YFHH0093)

Comparative Analysis of Fatty Acid Profiles in Jersey and Holstein Cow Milk and Breed Traceability Analysis

TANG Shuo, LIU Chunxia, HU Wenhui, LIANG Jianying, YUE Hong, HUANG Xiaoyan, LÜ Zhiyong, DUAN Guoxia, LIU Lijun, HU Xue, WU Xiaoli   

  1. (1. Inner Mongolia Yili Industrial Group Co. Ltd., Hohhot 010110, China; 2. Key Laboratory of Cattle and Sheep Milk and Meat Products Risk Control and Key Technology, State Administration for Market Regulation, Hohhot 010110, China)
  • Published:2025-11-10

摘要: 通过气相色谱法系统解析娟姗牛乳与荷斯坦牛乳中38 种脂肪酸的组成差异,结合主成分分析与正交偏最小二乘判别分析构建品种溯源模型。结果表明,娟姗牛乳脂肪酸总量及36 种脂肪酸含量均显著高于荷斯坦牛乳,其中,饱和脂肪酸、单不饱和脂肪酸、多不饱和脂肪酸含量分别提升51%、22%及39%,n-3与n-6系列脂肪酸含量分别增加58%和39%。通过主成分分析筛选出21 种具有显著品种差异的脂肪酸标志物(变量投影重要性>1、P<0.05),其中C6:0、C8:0、C10:0、C12:0及C14:0的差异贡献度最高。此外,娟姗牛乳中n-6/n-3比值更低,必需脂肪酸含量更高,亚油酸和α-亚麻酸配比更优。本研究基于商业化牧场全年采样,阐明规模化生产条件下娟姗牛乳与荷斯坦牛乳的脂肪酸差异特征,建立溯源模型,为乳品品种鉴别与营养品质评价提供了技术支撑。

关键词: 娟姗牛乳;成分分析;脂肪酸;品种鉴别;营养分析;乳脂营养评价

Abstract: This study systematically analyzed the differences in 38 fatty acids (FAs) composition between Jersey and Holstein cow milk using gas chromatography (GC), and built a breed traceability model by integrating principal component analysis (PCA) and orthogonal partial least squares-discriminant analysis (OPLS-DA). The results revealed that the total FA content and the contents of 36 individual FAs in Jersey milk were significantly higher than those in Holstein milk (P < 0.05), with 51%, 22%, and 39% increase being observed in the contents of saturated fatty acids (SFA), monounsaturated fatty acids (MUFA), and polyunsaturated fatty acids (PUFA), respectively. Additionally, the contents of n-3 and n-6 FAs in Jersey milk were elevated by 58% and 39%, respectively. PCA identified 21 FAs as markers to discriminate between Jersey and Holstein cow milk using the cut-off of variable importance in projection (VIP) score > 1 with a P value < 0.05, among which C6:0, C8:0, C10:0, C12:0, and C14:0 exhibited the greatest differences between the two milks. Furthermore, Jersey milk demonstrated a lower n-6/n-3 ratio, higher essential fatty acid (EFA) content, and a more favorable linoleic acid (LA)/α-linolenic acid (ALA) ratio compared with Holstein milk. This study provides a scientific basis for discriminating between milk from different breeds of cows and evaluating the nutritional quality of milk.

Key words: Jersey milk; composition analysis; fatty acids; breed authentication; nutritional profiling; milk lipid nutritional evaluation

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