食品科学 ›› 2026, Vol. 47 ›› Issue (14): 183-191.doi: 10.7506/spkx1002-6630-20260111-089

• 生物工程 • 上一篇    

甘南牦牛乳与犏牛乳微生物菌群及其代谢产物特征

郑娟善,刘佳丽,马驰,李鸿呵,郭鹏辉,冯小芳   

  1. (西北民族大学生命科学与工程学院,甘肃?兰州 730030)
  • 发布日期:2026-08-24
  • 基金资助:
    西北民族大学中央高校基本科研业务费项目(31920250075;31920250074;31920250027); 甘肃省高等学校人才培养质量提升项目(2024JGZD013)

Microbial Communities and Metabolite Characteristics in Yak and Cattle-Yak (Bos grunniens × Bos taurus) Milk in Gannan

ZHENG Juanshan, LIU Jiali, MA Chi, LI Honghe, GUO Penghui, FENG Xiaofang   

  1. (School of Life Sciences and Engineering, Northwest Minzu University, Lanzhou 730030, China)
  • Published:2026-08-24

摘要: 为揭示甘南地区牦牛与犏牛乳菌群动态、差异代谢物及潜在代谢途径,本研究选取同一自然放牧状态下的牦牛与犏牛各6 头,采集乳样,应用单分子实时测序和非靶向代谢组学技术比较分析甘南牦牛乳和犏牛乳微生物菌群组成和代谢物。结果表明,甘南牦牛乳和犏牛乳中微生物多样性组成无显著差异(P>0.05),但犏牛乳中菌群丰富度高于甘南牦牛乳;两种乳中主要优势菌门为变形菌门(Proteobacteria)、厚壁菌门(Firmicutes)和拟杆菌门(Bacteroidota);在属水平,甘南牦牛乳的优势菌属为拟杆菌属(Bacteroides)、未分类-鞘脂杆菌科(unclassified_Sphingobacteriaceae)、未分类-鼠杆菌科(unclassified_Muribaculaceae)、毛螺菌科(Lachnospiraceae_NK4A136_group)和普雷沃氏菌科(Prevotellaceae_UCG_001),犏牛乳的优势菌属为乳酸杆菌属(Lactobacillus)、拟杆菌属(Bacteroides)和链球菌属(Streptococcus);甘南牦牛乳中的代谢物D-氨基葡萄糖-6-磷酸、3-吲哚甲醇、N-甲酰-L-天冬氨酸、组氨酸甜菜碱和组氨酸-谷氨酸等可能通过增强脂质稳定性、抗氧化能力及乳蛋白合成效率赋予其更高的营养价值;而犏牛乳中的代谢物亚油酸、3-甲氧基-4-羟基苯乙醛等则可能影响乳制品的氧化稳定性与风味特性。综上,在相同放牧条件下,甘南牦牛乳与犏牛乳在微生物多样性上差异不显著,但犏牛乳的菌群丰富度更高。甘南牦牛乳代谢物特征与营养强化和抗氧化/蛋白合成相关,犏牛乳代谢物特征则可能与氧化稳定性及风味特性调控相关。

关键词: 牦牛乳;犏牛乳;微生物多样性;非靶向代谢组学

Abstract: To explore the microbial community dynamics, differential metabolites and potential metabolic pathways in the milk of yak and cattle-yak in Gannan area, this study selected 6 yaks and 6 cattle-yak from the same natural grazing condition. Milk samples were collected from these animals for analysis of microbial communities and metabolites by single-molecule real-time sequencing and non-targeted metabolomics. The results showed that there was no significant difference in the microbial diversity or community composition between yak and cattle-yak milk (P > 0.05), while the bacterial abundance in the cattle-yak milk was higher than that in yak milk. The dominant bacterial phyla in the two types of milk were Proteobacteria, Firmicutes and Bacteroidota. The dominant genera in yak milk were Bacteroides, unclassified_Sphingobacteriaceae, unclassified_Muribaculaceae, Lachnospiraceae_NK4A136_group, and Prevotellaceae_UCG_001, while those in cattle-yak milk were Lactobacillus, Bacteroides, and Streptococcus. The metabolites D-glucosamine-6-phosphate, indole-3-methanol, N-methyl-L-aspartic acid, histidine betaine, and histidine-glutamate in yak milk might enhance its nutritional value by improving lipid stability, antioxidant capacity, and the efficiency of protein synthesis; while the metabolites linoleic acid and 3-methoxy-4-hydroxybenzaldehyde in cattle-yak milk might affect its oxidative stability and flavor characteristics. In conclusion, under the same grazing conditions, there was no significant difference in microbial diversity between the milk of yak and cattle-yak. However, the microbial communities of cattle-yak milk exhibited higher richness than those of yak milk. The metabolic characteristics of yak milk were related to nutritional fortification and antioxidant/protein synthesis, while the metabolic characteristics of cattle-yak milk might be related to the regulation of oxidative stability and flavor characteristics.

Key words: yak milk; cattle-yak milk; microbial diversity; non-targeted metabolomics

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