Yuhan Wu, Jinzhi Han, Zhibin Liu, Wangxin Liu, Li Ni
Shoumei white tea is widely consumed, yet its limited product diversity constrains its economic value. This study used Shoumei tea infusion as a fermentation substrate to examine how Lactobacillus casei modulates flavor and underlying biochemical pathways. During 72 h of fermentation, the pH decreased from 5.0 to 4.1, accompanied by a 95.5% reduction in soluble sugars (from 10,056 to 453 mg/L). The accumulation of organic acids, particularly lactic acid (rising from 873.90 to 1268.17 µg/mL) and malic acid (rising from 150.83 to 725.18 µg/mL), drove the increase in sourness. Concurrently, substantial reductions in L-theanine (by 47.66%), catechins, flavonoids, and polyphenolic pigments resulted in markedly decreased bitterness and astringency. Headspace solid-phase microextraction-gas chromatography-mass spectrometry (HS-SPME-GC-MS) combined with partial least squares discriminant analysis (PLS-DA) identified 51 volatile flavor compounds (VFCs), among which phenylethyl alcohol, linalool, 1-heptanol, 1-hexanol, ethyl hexanoate, and ethyl octanoate (variable importance in projection [VIP] > 1) were established as major contributors to aroma enhancement. Integrated metabolomics and enzyme activity analyses indicated that elevated β-glucosidase and polyphenol oxidase activities, together with shifts in amino acid biosynthesis, 2-oxocarboxylic acid metabolism, and galactose metabolism, drove the formation of characteristic fermentation aromas. These findings provide mechanistic insight and technical support for developing value-added fermented Shoumei tea beverages.