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Enhancing cytidine biosynthesis by coupling minicell-forming morphology with biofilm-based fermentation
Di Zhang1, Changle Shao1, Dong Liu1
1National Engineering Research Center for Biotechnology, State Key Laboratory of Materials-Oriented Chemical Engineering, College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University, Nanjing, 211816, China.
None:
Cytidine is an important nucleoside in the pharmaceutical and biotechnology fields. To improve its biosynthesis efficiency, this study proposes a strategy that integrates minicell-forming recombinant strains with biofilm-based fermentation. By knocking out the key gene minC that regulates cell division, a cytidine-producing strain capable of stable minicell formation was constructed. In the biofilm-based fermentation system, the cytidine titer of this strain reached 1.74 g/L, representing a 114% increase compared to traditional free-cell fermentation. The study further revealed that minicell formation may promote biofilm formation, which in turn helps mitigate acidification during the fermentation process. This work provides a new approach for the synergistic optimization of morphology engineering and fermentation processes in microbial cytidine production, with significant potential in industrial biotechnology.
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