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Updated: Aug 5, 2026

Light-Controlled Fermentations for Microbial Chemical and Protein Production
Published on: March 22, 2022
Optimization of Solid-State Fermentation Process for Prodigiosin Production from Soybean Residue Using Serratia
Ting Yang1, Wenlu Bi1, Rui Zhang1
1Peking University Institute of Advanced Agricultural Sciences, Shandong Laboratory of Advanced Agricultural Sciences in Weifang, Weifang 261325, China.
Abstract:
Soybean residue, a major by-product of soy milk and tofu processing, is a large-yield and nutrient-rich substrate, but it is currently experiencing low utilization rates. In this study, a prodigiosin-producing strain, Serratia marcescens BD2025, was isolated from naturally fermented soybean residue. Subsequently, prodigiosin was produced by solid-state fermentation of soybean residue, and the fermentation conditions were further optimized by a Box-Behnken (BBD) model involving the soybean residue-to-water ratio, inoculum size, and temperature. Under the optimized conditions of a soybean residue-to-water ratio of 1:4.28, an inoculum size of 5.2%, and cultivation at 27.5 °C for 48 h, the prodigiosin yield reached 19.05 mg/g. High-performance liquid chromatography analysis showed that the major pigment peak had a retention time comparable to that of a prodigiosin standard, with an estimated purity of 96% based on peak area normalization. The results show that prodigiosin remains relatively stable at below 40 °C, in acidic conditions, and in darkness. The extracted prodigiosin inhibited both Escherichia coli and Staphylococcus aureus, with stronger activity against S. aureus. The scavenging ability of DPPH radical was dose-dependent, with the scavenging activity of 93.13% at 5 mg/mL. These findings indicate that soybean residue can serve as a solid-state fermentation substrate for prodigiosin production and provide a basis for the value-added utilization of soybean-processing residues.
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