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Rational design and construction of an efficient E. coli for production of diapolycopendioic acid.

机译:合理设计和构建一种高效的大肠杆菌,用于生产双聚戊二酸。

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摘要

We applied elementary mode analysis to a recombinant metabolic network of carotenoid-producing E. coli in order to identify multiple-gene knockouts for an enhanced synthesis of the carotenoids diapolycopendial (DPL) and diapolycopendioic acid (DPA). Based on the model, all inefficient carotenoid biosynthesis pathways were eliminated in a strain containing a combination of eight gene deletions. To validate the model prediction, the designed strain was constructed and tested for its performance. The designed mutant produces the carotenoids at significantly increased yields and rates as compared to the wild-type. The consistency between model prediction and experimental results demonstrates that elementary mode analysis is useful as a guiding tool also for the rational strain design of more complex pathways for secondary metabolite production.
机译:我们将基本模式分析应用到生产类胡萝卜素的大肠杆菌的重组代谢网络中,以鉴定多基因敲除,以增强类胡萝卜素的双多菌垂(DPL)和双聚戊二酸(DPA)的合成。基于该模型,在包含八个基因缺失组合的菌株中,消除了所有无效的类胡萝卜素生物合成途径。为了验证模型预测,构建了设计的菌株并对其性能进行了测试。与野生型相比,设计的突变体以显着提高的产量和速率产生类胡萝卜素。模型预测与实验结果之间的一致性表明,基本模式分析还可以作为指导工具,用于合理设计次生代谢产物的更复杂途径的菌株。

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