Xiaoling Zhou, Dongsheng Zhang, Sinan Xu, Yanju Hu, Bin Xu, Zhihua Li, Xiaobo Zou
Frozen raw steamed stuffed buns lose volume and harden during storage, limiting industrial quality retention. Here, we evaluated 0%, 30%, 50%, 70%, and 100% sourdough addition in a sourdough-yeast co-fermentation system and examined microbial, metabolic, and gluten-related changes. At 30% addition, the dough reached a maximum height of 47.7 mm and produced the best overall product quality. After 30 days at -18 °C, this group retained the highest specific volume, approximately 21% above the control, together with lower hardness and higher sensory scores. Yeast and lactic acid bacteria (LAB) counts remained at 6.21 and 7.50 lg CFU/g, respectively, and proline accumulation was positively correlated with greater freeze tolerance, suggesting that it may play a role in cryoprotection, but the causal relationship remains to be further experimentally verified. Free sulfhydryl content increased by 6.25%, compared with 73.02% in the control, indicating less disruption of gluten disulfide bonds. Therefore, under the experimental conditions employed in this study (specific wheat flour, sourdough fermentation system, and 30-day frozen storage), the 30% sourdough addition level exhibited the best overall quality improvement, probably through coordinated microbial metabolism and preservation of the gluten network. These findings support the use of sourdough-yeast co-fermentation in frozen flour products.