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Modular design of metabolic network for robust production of n-butanol from galactose–glucose mixtures

机译:代谢网络的模块化设计可从半乳糖-葡萄糖混合物中稳定生产正丁醇

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摘要

BackgroundRefactoring microorganisms for efficient production of advanced biofuel such as n-butanol from a mixture of sugars in the cheap feedstock is a prerequisite to achieve economic feasibility in biorefinery. However, production of biofuel from inedible and cheap feedstock is highly challenging due to the slower utilization of biomass-driven sugars, arising from complex assimilation pathway, difficulties in amplification of biosynthetic pathways for heterologous metabolite, and redox imbalance caused by consuming intracellular reducing power to produce quite reduced biofuel. Even with these problems, the microorganisms should show robust production of biofuel to obtain industrial feasibility. Thus, refactoring microorganisms for efficient conversion is highly desirable in biofuel production.
机译:背景技术从廉价原料中的糖类混合物中重构微生物以有效生产高级生物燃料(例如正丁醇)是在生物精炼厂实现经济可行性的先决条件。然而,由于复杂的同化途径,异源代谢产物的生物合成途径的扩增困难以及由于消耗细胞内还原能力导致的氧化还原失衡,由不可食用且廉价的原料生产生物燃料极富挑战性。生产相当少的生物燃料。即使存在这些问题,微生物也应显示出强大的生物燃料生产能力,以取得工业可行性。因此,在生物燃料生产中非常需要重构微生物以进行有效转化。

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