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◆ Enzyme and microbial technology2026-08-19

Optimization of fermentation conditions for 3‑methylthiopropanol production by Saccharomycopsis fibuligera in a tobacco-based medium and its impact on tobacco quality.

Yujiao Zhang, Jinghao Ma, Anlai Luo, Liujie Cheng, Zhilei Fu, Pengxiao Liu, Xiaoyan Liu, Ran Yang, Guangsen Fan, Xinhui Peng

原始摘要(英文原文)· Original abstract
In this study, we investigated the potential of the Baijiu-derived yeast Saccharomycopsis fibuligera (S. fibuligera) Y1402 to synthesize the key flavor compound 3-methylthiopropanol (3-Met) using a tobacco-based substrate. The culture medium composition and fermentation conditions were systematically optimized using single-factor experiments, Plackett-Burman design, and response surface methodology. The results showed that under the following conditions: glucose concentration of 60 g/L, inoculum size of 0.09%, tobacco leaf size of 40-60 mesh, tobacco addition of 3%, shaking speed of 225 rpm, initial pH of 5.0, yeast extract concentration of 0.4 g/L, liquid volume of 26.52 mL/250 mL, L-methionine concentration of 6.95 g/L, and fermentation time of 47.7 h, the yield of 3-Met reached 3.99 g/L, which was in excellent agreement with the model-predicted value (4.00 g/L). Sensory evaluation indicated that when the L-methionine addition was 2.0 g/L, the aroma quality, smoothness, delicacy, and sweetness of the fermented tobacco shreds were significantly improved, whereas the off-flavor intensity was markedly reduced, resulting in substantially enhanced sensory quality of the tobacco shreds. This study is the first to report efficient 3-Met synthesis by S. fibuligera in a tobacco matrix, providing a novel strategy for the microbe-directed modulation of tobacco flavor.
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Optimization of fermentation conditions for 3‑methylthiopropanol production by Saccharomycopsis fibuligera in a tobacco-based medium and its impact on tobacco quality. — 科研速览 Science Skim