数字农科院2.0

Fatty acidomics unveils seasonal variations in nutritional quality of buffalo and camel milk

文献类型: 外文期刊

作者: Meiqing Chen;Songcui Lu;Yingjie Qi;Nan Zheng;Ling Li;Li Huang;Yankun Zhao;Lu Meng;Yangdong Zhang;Jiaqi Wang

作者机构:

关键词: buffalo milk;camel milk;fatty acidomics;seasonal variations

期刊名称: Journal of Dairy Science

ISSN: 0022-0302

年卷期: 2025 年 108 卷 7 期

页码:

收录情况: SCIE(2025版)

摘要: Interest in nonbovine milk, such as buffalo and camel milk, for human consumption is increasing, yet information on their nutritional quality is limited. This study aimed to investigate the fatty acid profiles of camel and buffalo milk, focusing on how species and seasonal variations affect their nutritional value. Buffalo milk and camel milk samples were collected respectively from the Guangxi Zhuang Autonomous Region and Xinjiang Uyghur Autonomous Region of China over the year. A total of 88 fatty acids (C1–C24) were quantified using GC-MS as part of a comprehensive fatty acidomics approach. The results showed that species differences had a greater impact on fatty acid profiles than seasonal variations. Buffalo milk had higher concentrations of short-chain fatty acids, especially C4:0, whereas camel milk was richer in UFA. In autumn and winter, both milks had higher levels of even-chain SFA and UFA (n-1, n-3, n-5, n-6, n-7, n-12). Conversely, milk in spring and summer had higher levels of n-9 UFA, even- and branch-chain SFA. Camel milk showed more favorable fatty acid characteristics, including an optimal n-6/n-3 PUFA ratio for reducing inflammation and cardiovascular risks. In autumn, both milks had higher n-6/n-3 PUFA ratios, PUFA/SFA ratios, and health promoting index, and lower atherogenic index, thrombogenic index, and hypocholesterolemic/hypercholesterolemic ratios. These findings highlight the potential for developing species-specific dairy products and offer insights for optimizing milk quality through seasonal adjustments in feeding and management.

分类号:

  • 相关文献

[1]Seasonal ammonia emissions from an intensive beef cattle feedlot in Victoria Australia. Wang Q.,Flesch T.K.,Bai M.,Zhang M.,Chen D.. 2024

[2]Seasonal dynamics and stability of gut antibiotic resistance genes in plateau pika (Ochotona curzoniae) and plateau zokor (Eospalax baileyi). Wang, Yu,Qian, Yuan,Shi, Chenwei,Bi, Jie,Dong, Pengcheng,Zou, Yongqiang,Yang, Yayuan,Tao, Yuanqing,Li, Huan. 2026

[3]MINERAL, VITAMIN AND FATTY ACID CONTENTS IN THE CAMEL MILK OF DROMEDARIES IN THE ANXI GANSU CHINA. Liang, J. P.,Wang, S. Y.,Shao, W. J.,Wen, H.,Wang, S. Y.. 2011

[4]EFFECT OF RAW CAMEL MILK IN TYPE 2 DIABETES ANIMAL MODELS AND PATIENTS: TEN MONTHS RANDOMISED STUDY. Wang, S. Y.,Shao, W. J.,Heng, H.,Wang, S. Y.,Liang, J. P.,Song, N. N.. 2009

[5]Effects of different heat treatments on Maillard reaction products and volatile substances of camel milk. Xiaoxuan Zhao,Yinping Guo,Yumeng Zhang,Xiaoyang Pang,Yunna Wang,Jiaping Lv,Shuwen Zhang. 2023

[6]Microbial diversity in camel milk from Xinjiang, China as revealed by metataxonomic analysis. Miao Sun,Wei Shao,Zhengyu Liu,Xianlan Ma,He Chen,Nan Zheng,Yankun Zhao. 2024

[7]Ultrasound-assisted fermentation by Lactiplantibacillus paraplantarum for the preparation of camel milk polysaccharide-protein composite nanoparticles. Yunlong Song,Haiqi Long,Xiaoli Li,Bin Li,Xiaocui Liu,Yu Rao,Lei Liu. 2025

[8]Formation Of Bioactive Peptides During Simulated Gastrointestinal Digestion Is Affected By Alpha(S1)-Casein Polymorphism In Buffalo Milk. Hu, Qi,Li, Shanshan,Wu, Jianping,He, Guoqing,Hu, Qi,Wu, Jianping,Li, Shanshan,Liu, Jianxin,Li, Shanshan,Chen, Chen,Li, Ling,He, Guoqing,Ren, Daxi. 2020

[9]Characterization of the indigenous microflora in raw and pasteurized buffalo milk during storage at refrigeration temperature by high-throughput sequencing. Li, Ling,Feng, Ling,Zeng, Qingkun,Tang, Yan,Huang, Li,Yang, Pan,Renye, John A., Jr.,Ren, Daxi.

[10]A survey on the micro biological and chemical composition of buffalo milk in China. Han, Bei-Zhong,Meng, Yun,Li, Min,Yang, Ying-Xiao,Ren, Fa-Zheng,Zeng, Qing-Kun,Nout, M. J. Robert. 2007

[11]Discrimination of goat, buffalo, and yak milk from different livestock, regions, and lactation using microelement contents. Xiaoqing Guo,Hongyan Liu,Qingyu Zhao,Yuchang Qin,Junmin Zhang. 2021

[12]Discrimination of goat, buffalo, and yak milk from different livestock, regions, and lactation using microelement contents. Xiaoqing Guo,Hongyan Liu,Qingyu Zhao,Yuchang Qin,Junmin Zhang. 2021

作者其他论文 更多>>