生物生产
化学
柠檬烯
生物合成
代谢工程
生物化学
生物催化
发酵
异源的
有机化学
基质(水族馆)
萜类
异源表达
催化作用
酶
产量(工程)
碳纤维
碳源
工业微生物学
代谢途径
加氧酶
生物量(生态学)
分解
食品科学
单加氧酶
组合化学
萜烯
合成生物学
香芹酮
工业生物技术
作者
Weiying Zhao,Yanzhe Shang,Meiyu Pan,Peng Fei,Yuying Wang,Yuanchan Luo,Hui Wu
标识
DOI:10.1021/acs.jafc.5c14638
摘要
Limonene is a high-value monoterpenoid used in food, pharmaceutical, and fragrance applications. To overcome limitations of conventional production, this study developed a biosynthesis platform using acetate as the sole carbon source. Acetate is an ideal nonfood substrate that can be sustainably derived from industrial waste streams, syngas, and CO2 reduction. Initially, the heterologous synthetic pathway was constructed to yield 0.13 mg/L limonene from acetate. By introducing the mutated EfMVASA110G to enhance catalytic efficiency, along with promoter engineering and substitution of the synthesis substrate, the production titer was enhanced to 49.24 mg/L. Subsequent host optimization through NADPH regeneration and pathway knockout, combined with fermentation optimization, increased the titer to 167.45 mg/L. Ultimately, whole-cell biocatalysis achieved 450.72 mg/L, establishing the highest reported acetate-based limonene titer. Overall, this study establishes a framework for biosynthesis of high-value terpenoids from nonfood feedstocks and demonstrates acetate as a promising carbon source for advanced bioproduction systems.
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