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首页> 外文期刊>Frontiers in Microbiology >Host and Pathway Engineering for Enhanced Lycopene Biosynthesis in Yarrowia lipolytica
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Host and Pathway Engineering for Enhanced Lycopene Biosynthesis in Yarrowia lipolytica

机译:增强番茄红素生物合成的宿主和途径工程在<斜体> Yarrowia Lipolytica

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Carotenoids are a class of molecules with commercial value as food and feed additives with nutraceutical properties. Shifting carotenoid synthesis from petrochemical-based precursors to bioproduction from sugars and other biorenewable carbon sources promises to improve process sustainability and economics. In this work, we engineered the oleaginous yeast Yarrowia lipolytica to produce the carotenoid lycopene. To enhance lycopene production, we tested a series of strategies to modify host cell physiology and metabolism, the most successful of which were mevalonate pathway overexpression and alleviating auxotrophies previously engineered into the PO1f strain of Y. lipolytica . The beneficial engineering strategies were combined into a single strain, which was then cultured in a 1-L bioreactor to produce 21.1 mg/g DCW. The optimized strain overexpressed a total of eight genes including two copies of HMG1, two copies of CrtI, and single copies of MVD1, EGR8, CrtB, and CrtE. Recovering leucine and uracil biosynthetic capacity also produced significant enhancement in lycopene titer. The successful engineering strategies characterized in this work represent a significant increase in understanding carotenoid biosynthesis in Y. lipolytica , not only increasing lycopene titer but also informing future studies on carotenoid biosynthesis.
机译:类胡萝卜素是一类具有商业价值作为食品和饲料添加剂的分子,具有营养素性质。将类胡萝卜素合成从石化基础的前体与糖和其他生物愈植物碳源的生物生产,有望改善过程可持续性和经济学。在这项工作中,我们设计了糖玉米酵母Yarrowia Lipolytica以产生类胡萝卜素番茄红素。为了增强番茄红素的产量,我们测试了一系列策略来修饰宿主细胞生理和新陈代谢,其中最成功的是甲醛途径过表达和缓解以前设计成Y. Lipolytica的PO1F菌株的营养类药品。将有益的工程策略组合成单一菌株,然后在1 -L生物反应器中培养,以产生21.1mg / g dcw。优化的菌株过表达总共8个基因,包括两份HMG1,两个CRTI副本,以及MVD1,EGR8,CRTB和CRTE的单拷贝。回收亮氨酸和尿嘧啶生物合成能力也产生了番茄红素滴度的显着增强。在这项工作中表征的成功策略代表了了解在Y. Lipolytica中的类胡萝卜素生物合成的显着增加,不仅增加了番茄红素滴度,而且还通知了未来的类胡萝卜素生物合成的研究。

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