代谢工程
生物信息学
生化工程
生产(经济)
合成生物学
生物技术
计算生物学
化学
生物
组合化学
生物化学
工程类
酶
基因
宏观经济学
经济
作者
Koray Malcı,Rodrigo Santibáñez,Nestor Jonguitud‐Borrego,Jorge H. Santoyo‐Garcia,Eduard J. Kerkhoven,Leonardo Rios‐Solis
标识
DOI:10.1186/s12934-023-02251-7
摘要
This study highlights the effectiveness of computational and integrated approaches in identifying promising genomic modifications that can enhance the performance of yeast cell factories. By employing in silico design algorithms and wet-lab screening, we successfully improved taxadiene production in engineered S. cerevisiae strains. The best-performing strain, KM32, achieved substantial increases in taxadiene as well as production of T5α-ol and T5αAc. These findings emphasize the importance of using systematic and integrated strategies to develop efficient yeast cell factories, providing potential implications for the industrial production of high-value isoprenoids like Taxol®.
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