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Updated: Apr 27, 2026

Author Spotlight: Exploring Tea Aroma Using Solvent-Assisted Flavor Evaporation Technique
Published on: May 26, 2023
Elucidating temporal variations in non-volatile metabolites during black tea rolling process via metabolomics
Xianxiu Zhou1, Jiahao Tang2, Jiajing Hu3
1National Key Laboratory for Tea Plant Germplasm Innovation and Resource Utilization, Tea Research Institute, Chinese Academy of Agricultural Sciences, Hangzhou 310008, China; College of Tea Science, Yunnan Agricultural University, Kunming 650201, China.
None:
Rolling is a critical determinant of black tea quality, yet temporal metabolite dynamics during this stage remain poorly understood. This study employed UHPLC-Q-Exactive-MS-based untargeted metabolomics to systematically investigate metabolic changes across six sequential rolling intervals (T1-T6). A total of 115 non-volatile metabolites were identified, dominated by flavonol and flavonol/flavone glycosides (30.4%) and amino acid derivatives (25.2%). Pairwise comparative analysis revealed the T3-T4 period as the critical biochemical transition phase. Temporal profiling indicated distinct trends: prolonged rolling progressively reduced flavan-3-ols and phenolic acids, lowering astringency and sourness of tea infusion, while theaflavins increased markedly, enhancing the brightness and mellow taste. These divergent responses highlight the differential effects of mechanical stress on metabolite dynamics. KEGG pathway analysis further identified flavonoid biosynthesis as the primary regulatory pathway governing flavor-related metabolic formation during rolling. The findings provide a scientific framework for optimizing rolling protocols and advancing precision control in black tea production.
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