The invention provides non-naturally occurring microbial organisms containing enzymatic pathways and/or metabolic modifications for enhancing carbon flux through acetyl-CoA. In some embodiments, the microbial organisms having such pathways also include pathways for generating reducing equivalents, formaldehyde fixation and/or formate assimilation. The enhanced carbon flux through acetyl-CoA, in combination with pathways for generating reducing equivalents, formaldehyde fixation and/or formate assimilation can, in some embodiments, be used for production of a bioderived compound. Accordingly, in some embodiments, the microbial organisms of the invention can include a pathway capable of producing a bioderived compound of the invention. The invention still further provides a bioderived compound produced by a microbial organism of the invention, culture medium having the bioderived compound of the invention, compositions having the bioderived compound of the invention, a biobased product comprising the bioderived compound of the invention, and a process for producing a bioderived compound of the invention.
本发明提供了含有酶途径和/或代谢修饰的非天然微
生物,用于通过乙酰-CoA 提高碳通量。在某些实施方案中,具有此类途径的微
生物还包括产生还原当量、
甲醛固定和/或
甲酸同化的途径。在某些实施方案中,通过乙酰-CoA 增强的碳通量与产生还原当量、
甲醛固定和/或
甲酸同化的途径相结合,可用于生产
生物衍生化合物。因此,在某些实施方案中,本发明的微
生物有机体可以包括能够产生本发明
生物衍生化合物的途径。本发明还进一步提供了一种由本发明微
生物生物体生产的
生物衍生化合物、具有本发明
生物衍生化合物的
培养基、具有本发明
生物衍生化合物的组合物、包含本发明
生物衍生化合物的
生物基产品,以及生产本发明
生物衍生化合物的工艺。