Related Experiment Video
Updated: May 20, 2026

Immobilization of Multi-biocatalysts in Alginate Beads for Cofactor Regeneration and Improved Reusability
Published on: April 22, 2016
Engineering Vibrio natriegens as a Microbial Cell Factory for Efficient Xylitol Production from Nondetoxified and
Yijie Sun1,2,3, Yan Meng1, Jiaqi Xu1,2
1Institute of Bioengineering, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310058, China.
Abstract:
Vibrio natriegens (V. natriegens) is a highly promising and cost-effective next-generation microbial cell factory, which was first engineered here to successfully utilize hemicellulose hydrolysate for the production of xylitol, an important high-value compound. Systematic metabolic engineering strategies were employed in this study to enhance xylitol biosynthesis, including screening a highly efficient xylose reductase, constructing a heterologous xylitol synthesis pathway, analyzing and optimizing D-xylose transporters, reinforcing intracellular NADPH supply via cofactor engineering, and optimizing fermentation conditions. The resulting engineered strain achieved high-level xylitol production directly from nondetoxified and nonsterilized hemicellulose hydrolysate, reaching a titer of 60.06 g/L, yield of 1.01 g/g D-xylose, and a productivity of 1.15 g/L/h. To the best of our knowledge, this study reported the highest xylitol yield and productivity ever reported for microbial fermentation using nondetoxified and nonsterilized hemicellulose hydrolysate as the substrate. This study demonstrates the remarkable potential of engineered V. natriegens as a versatile microbial cell factory for diverse biochemicals.
Related Concept Videos
Bioreactor Controls-III
Microbes in Beverage Production
Microbial Fermentation
Microbes in the Production of Fermented Foods
Microbes in Food Production
Scale-Up Processes

