数字农科院2.0

Comparative Study on Nutritional Characteristics and Volatile Flavor Substances of Yak Milk in Different Regions of Gannan

文献类型: 外文期刊

作者: Yang, Guowu;Zhang, Juanxiang;Dai, Rongfeng;Ma, Xiaoyong;Huang, Chun;Ren, Wenwen;Ma, Xiaoming;Lu, Jianwei;Zhao, Xue;Ji, Renqing;Zha, Lao;Guo, Xian;Chu, Min;La, Yongfu;Bao, Pengjia;Liang, Chunnian

作者机构:

关键词: yak milk;GC-IMS;amino acids;flavor substances

期刊名称: FOODS

ISSN:

年卷期: 2023 年 12 卷 11 期

页码:

收录情况: SCIE(2023版)

摘要: This study aimed to investigate the nutritional properties of yak milk in various areas of Gannan. The milk composition analyzer, automatic amino acid analyzer, and flavor analyzer were used to detect the conventional nutrients, amino acids, and volatile flavor substances of 249 yak milks in Meiren grassland, Xiahe grassland, and Maqu grassland (hereinafter referred to as Meiren yak, Xiahe yak, and Maqu yak) in the Gannan area. The results showed that the fat content of Meiren yak milk was significantly higher than that of Maqu yak and Xiahe yak (p < 0.05). The protein content of Meiren yak milk was significantly higher than that of Xiahe yak (p < 0.05), but not significantly different from that of Maqu yak (p > 0.05). The casein content in the milk of Maqu yak was significantly higher than that of Meiren yak and Xiahe yak (p < 0.05). There was no significant difference in the lactose content of yak milk in the three regions (p > 0.05). The content of glutamic acid in the milk of Meiren yak, Xiahe yak, and Maqu yak was noticeably high, which was 1.03 g/100 g, 1.07 g/100 g, and 1.10 g/100 g, respectively. The total amino acid (TAA) content was 4.78 g/100 g, 4.87 g/100 g, and 5.0 g/100 g, respectively. The ratios of essential amino acids (EAA) and total amino acids (TAA) in the milk of Meiren yak, Xiahe yak, and Maqu yak were 42.26%, 41.27%, and 41.39%, respectively, and the ratios of essential amino acids (EAA) and nonessential amino acids (NEAA) were 73.19%, 70.28%, and 70.61%, respectively. In the yak milk samples collected from three different regions, a total of 34 volatile flavor compounds were detected, including 10 aldehydes, five esters, six ketones, four alcohols, two acids, and seven others. The main flavor substances qualitatively obtained from Meiren yak milk were ethyl acetate, n-valeraldehyde, acetic acid, heptanal, and n-hexanal. Xiahe yak milk mainly contains ethyl acetate, isoamyl alcohol, n-valeraldehyde, heptanal, and ethyl butyrate. Maqu yak milk mainly contains ethyl acetate, n-valeraldehyde, isoamyl alcohol, heptanal, ethyl butyrate, and n-hexanal. Principal component analysis showed that the flavor difference between Xiahe yak and Maqu yak was small, while the flavor difference between Xiahe yak, Maqu yak, and Meiren yak was large. The findings of this research can serve as a foundation for the future advancement and application of yak milk.

分类号:

  • 相关文献

[1]Post-harvest ripening affects drying behavior, antioxidant capacity and flavor release of peach via alteration of cell wall polysaccharides content and nanostructures, water distribution and status. Jia Bao Ni,Magdalena Zielinska,Jun Wang,Xiao Ming Fang,Parag Prakash Sutar,Suo Bin Li,Xiang Xin Li,Hui Wang,Hong Wei Xiao. 2023

[2]Chromatin accessibility mediated transcriptome changes contribute to flavor substance alterations and jasmonic acid hyperaccumulation during oolong tea withering process. Kong, Weilong,Zhao, Ping,Zhang, Qing,Yang, Jingjing,Zhu, Qiufang,Zhang, Yanbing,Deng, Xuming,Chen, Xiao,Lin, Jinke,Zhang, Xingtan. 2023

[3]Study on the correlation between the dominant microflora and the main flavor substances in the fermentation process of cigar tobacco leaves. Xue Wu,Yanqi Hu,Qian Wang,Jian Liu,Song Fang,Dewen Huang,Xueli Pang,Jianmin Cao,Yumeng Gao,Yang Ning. 2023

[4]Changes of microbial community diversity and flavor substances during fermentation of Bashang Suancai in different months. Yuan Liu,Zhiyu Yan,Jiachen Chen,Jian Wang,Weihai Xing,Yali Huang,Chunheng Dai,Peng Dong,Dongjie Wang,Yingqi Peng,Xiao Zhao,Xinru Guo,Lin Yuan,Pengyun Li,Jinsheng Liu. 2025

[5]Enzymatic characterization of transglutaminase from Streptomyces mobaraensis DSM 40587 in high salt and effect of enzymatic cross-linking of yak milk proteins on functional properties of stirred yogurt. Zhang, L.,Zhang, L.,Yi, H.,Du, M.,Han, X.,Jiao, Y.,Ma, C.,Feng, Z.,Zhang, Y.. 2012

[6]Integration of in-cassette lysis, purification, and lateral flow strips-based sensor for rapid and on-site detection of yak milk adulteration. Nan Wang,Juan Zhang,Bin Xiao,Hui Li,Jiaci Chen,Xiaoyun Sun,Fengchun Huang,Hehe Li,Ailiang Chen. 2023

[7]Polymorphisms of ITGA9 Gene and Their Correlation with Milk Quality Traits in Yak (Bos grunniens). Mengfan Zhang,Xita Zha,Xiaoming Ma,Yongfu La,Xian Guo,Min Chu,Pengjia Bao,Ping Yan,Xiaoyun Wu,Chunnian Liang. 2024

[8]Analysis of Flavor Differences in Yak Milk Powder at Different Milk Production Stages by Headspace Solid-Phase Microextraction and Gas Chromatography–Mass Spectrometry. Diandian Wang,Yaxi Zhou,Jian Zhao,Yu Guo,Wenjie Yan. 2025

[9]Proteomics-based study for evaluation crossbreeding advantages of cattle-yak milk. Xi Chen,Juan Zhang,Chuan Liu,Xiaoyun Sun,Xiangyi Pang,Song Qu,Kai Wu,Xiaolei Lv,Ailiang Chen. 2025

[10]Bacterial community structure and metabolomic profiles of yak milk and cattle-yak milk during refrigeration in Gannan region: Analysis of interspecific differences in milk spoilage. Li, Hongqiang,Wang, Hongbo,Gao, Yaqin,Zhao, Xiangmin,Liang, Jing,Pei, Longying,Yao, Yali,Tang, Defu. 2025

[11]Advances and Perspectives in Fruits and Vegetables Flavor Based on Molecular Sensory Science. Gou, Min,Bi, Jinfeng,Chen, Qinqin,Wu, Xinye,Fauconnier, Marie-Laure,Qiao, Yening. 2021

[12]Characterization of volatile metabolites in Pu-erh teas with different storage years by combining GC-E-Nose, GC–MS, and GC-IMS. Yuting Rong,Jialing Xie,Haibo Yuan,Lilei Wang,Fuqiao Liu,Yuliang Deng,Yongwen Jiang,Yanqin Yang. 2023

[13]Application of GC-IMS coupled with chemometric analysis for the classification and authentication of geographical indication agricultural products and food. Hong Zhu,Dazhou Zhu,Junmao Sun. 2023

[14]Characterization of the key odorants in floral aroma green tea based on GC-E-Nose, GC-IMS, GC-MS and aroma recombination and investigation of the dynamic changes and aroma formation during processing. Jialing Xie,Lilei Wang,Yuliang Deng,Haibo Yuan,Jiayi Zhu,Yongwen Jiang,Yanqin Yang. 2023

[15]Investigation of the Volatile Profile of Red Jujube by Using GC-IMS, Multivariate Data Analysis, and Descriptive Sensory Analysis. Yening Qiao,Qinqin Chen,Jinfeng Bi,Xinye Wu,Xinwen Jin,Min Gou,Xinrui Yang,Giorgia Purcaro. 2022

[16]Effect of Pathogenic Fungal Infestation on the Berry Quality and Volatile Organic Compounds of Cabernet Sauvignon and Petit Manseng Grapes. Xueyao Li,Tinggang Li,Minmin Li,Deyong Chen,Xiaowei Liu,Shanshan Zhao,Xiaofeng Dai,Jieyin Chen,Zhiqiang Kong,Jianxin Tan. 2022

[17]Insight into aroma dynamic changes during the whole manufacturing process of chestnut-like aroma green tea by combining GC-E-Nose, GC-IMS, and GC × GC-TOFMS. Yanqin Yang,Michael C. Qian,Yuliang Deng,Haibo Yuan,Yongwen Jiang. 2022

[18]Evaluation of Mutton Quality Characteristics of Dongxiang Tribute Sheep Based on Membership Function and Gas Chromatography and Ion Mobility Spectrometry. Lu, Zengkui,Li, Jianye,Yuan, Chao,Xi, Bin,Yang, Bohui,Meng, Xianyu,Guo, Tingting,Yue, Yaojing,Gao, Yaqin,Liu, Jianbin,Sun, Xiaoping. 2022

[19]Characterization of the key aroma compounds in black teas with different aroma types by using gas chromatography electronic nose, gas chromatography-ion mobility spectrometry, and odor activity value analysis. Yanqin Yang,Hongkai Zhu,Jiayu Chen,Jialing Xie,Shuai Shen,Yuliang Deng,Jiayi Zhu,Haibo Yuan,Yongwen Jiang. 2022

[20]Uncovering the Dynamic Alterations of Volatile Components in Sweet and Floral Aroma Black Tea during Processing. Yanqin Yang,Qiwei Wang,Jialing Xie,Yuliang Deng,Jiayi Zhu,Zhongwen Xie,Haibo Yuan,Yongwen Jiang. 2024

作者其他论文 更多>>