Purpose: This study aimed to utilize genetically engineered for the production of ergothioneine (EGT). Given the value of EGT and the application of in enzyme preparation production, we cloned the key enzymes (EanA and EanB) from . Through gene alignment, new ergothioneine synthase genes (EanAN and EanBN) were identified and then expressed in to construct strains. Additionally, we investigated the factors influencing the yield of EGT and made a comparison with .
Methods: The relevant genes were cloned and transferred into . Fermentation experiments were conducted under different conditions for yield analysis, and the stability of this bacterium was also evaluated simultaneously.
Results: The constructed strains were capable of producing EGT. Specifically, the yield of the EanANBN strain reached (643.8 ± 135) mg/L, and its stability was suitable for continuous production.
Conclusions: Genetically engineered demonstrates potential in the industrial-scale production of EGT. Compared with , it has advantages, thus opening up new possibilities for the application and market supply of EGT.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.3390/metabo15010045 | DOI Listing |
Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!