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De novo biosynthesis of complex natural product sakuranetin using modular co-culture engineering

Appl Microbiol Biotechnol. 2020-04-01; 
Xiaonan Wang, Zhenghong Li, Lizelle Policarpio, Mattheos A G Koffas, Haoran Zhang
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Codon Optimization … Applied Microbiology and Biotechnology https://doi.org/10.1007/s00253-020-10576-1 Page 2 … The NOMT gene from Oryza sativa (Shimizu et al. 2012) was codon- optimized for E. coli expression and synthesized by GenScript, New Jersey … Get A Quote

摘要

Flavonoids are a large family of plant and fungal natural products, among which many have been found to possess outstanding biological activities. Utilization of engineered microbes as surrogate hosts for heterologous biosynthesis of flavonoids has been investigated extensively. However, current microbial biosynthesis strategies mostly rely on using one microbial strain to accommodate the long and complicated flavonoid pathways, which presents a major challenge for production optimization. Here, we adapt the emerging modular co-culture engineering approach to rationally design, establish and optimize an Escherichia coli co-culture for de novo biosynthesis of flavonoid sakuranetin from simple carbon substrate gl... More

关键词

Complex natural product, De novo biosynthesis, E. coli, Modular co-culture engineering, Sakuranetin