食品科学 ›› 2023, Vol. 44 ›› Issue (6): 65-73.doi: 10.7506/spkx1002-6630-20220501-004

• 食品化学 • 上一篇    下一篇

厌氧处理对黄茶生物活性的影响及γ-氨基丁酸富集的代谢组学分析

章垚琪,潜卫东,傅玲琳,王彦波,张巧智   

  1. (1.浙江工商大学食品与生物工程学院,浙江食品质量安全工程研究院,浙江 杭州 310018;2.缙云县黄贡茶业有限公司,浙江 丽水 321400)
  • 出版日期:2023-03-27 发布日期:2023-03-27
  • 基金资助:
    浙江省基础公益研究项目(LGN22C200027)

Effect of Anaerobic Treatment on Bioactive Properties of Yellow Tea and Metabolomic Analysis of Its Promoting Effect on γ-Aminobutyric Acid Enrichment

ZHANG Yaoqi, QIAN Weidong, FU Linglin, WANG Yanbo, ZHANG Qiaozhi   

  1. (1. Zhejiang Research Institute of Food Quality and Safety Engineering, School of Food Science and Biotechnology, Zhejiang Gongshang University, Hangzhou 310018, China; 2. Jinyun County Huanggong Tea Industry Co. Ltd., Lishui 321400, China)
  • Online:2023-03-27 Published:2023-03-27

摘要: 以黄茶为研究对象,探究厌氧处理对茶叶中γ-氨基丁酸(γ-aminobutyric acid,GABA)以及其他活性成分的含量和功能的影响,并利用代谢组学分析厌氧过程促进黄茶富集GABA的机理和代谢途径变化。结果表明,厌氧处理后黄茶中的GABA含量升至3.3 mg/g,且其上下游氨基酸的含量发生了相应变化。同时,厌氧处理后黄茶中的总酚和总黄酮含量均有显著提升。体外抗氧化、抗糖基化和降糖活性分析发现,厌氧处理提高了黄茶的自由基清除能力、总抗氧化能力和抑制糖基化产物形成的能力,但对其抑制淀粉消化酶活性的能力影响较小。经代谢组学分析共筛选出218 种差异代谢物,包括氨基酸类、有机酸、类黄酮、类核苷酸和糖类等。经通路富集分析,发现受显著调控的通路包括氨基酸的生物合成代谢、色氨酸代谢、类黄酮生物代谢和丁酸代谢等。厌氧处理通过影响L-谷氨酸和琥珀酸半醛途径调控GABA含量。本研究可为GABA富集茶的研究和开发提供参考。

关键词: γ-氨基丁酸;黄茶;厌氧处理;生物活性;代谢组学

Abstract: In this study, we aimed to explore the effect of anaerobic treatment on the contents and functions of bioactive components such as γ-aminobutyric acid (GABA) in yellow tea and to analyze the mechanism by which anaerobic treatment promotes GABA enrichment using metabolomics. We also analyzed the changes in related metabolism pathways. The results showed that the content of GABA in yellow tea was increased to 3.3 mg/g after anaerobic treatment, and the contents of the upstream and downstream amino acids related to GABA were changed correspondingly. Moreover, anaerobic treatment significantly increased the contents of total phenolics and total flavonoids in yellow tea. In vitro bioactivity evaluation showed that anaerobic treatment improved the free radical scavenging capacity, total antioxidant activity and inhibitory effect on the formation of glycosylation products of yellow tea, but had little effect on the ability of yellow tea to inhibit starch digestion enzymes. A total of 218 differential metabolites between fresh and GABA-rich tea, including amino acids, organic acids, flavonoids, nucleotides, and sugars. Pathway enrichment analysis demonstrated that the amino acid biosynthesis, tryptophan metabolism, flavonoid biosynthesis, and butyrate metabolism pathways were significantly regulated. Anaerobic treatment could regulate the GABA content in yellow tea by affecting the L-glutamate and succinic semialdehyde pathways. This study can provide a reference for the research and development of GABA-rich tea.

Key words: γ-aminobutyric acid; yellow tea; anaerobic treatment; biological activity; metabolomics

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