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首页> 外文期刊>Green chemistry >Biotechnological production of acetoin, a bio-based platform chemical, from a lignocellulosic resource by metabolically engineered Enterobacter cloacae
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Biotechnological production of acetoin, a bio-based platform chemical, from a lignocellulosic resource by metabolically engineered Enterobacter cloacae

机译:代谢工程化的阴沟肠杆菌从木质纤维素资源中生物技术生产乙缩醛(一种基于生物的平台化学品)

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摘要

Acetoin (AC) is regarded as one of the top potential sugar-derived chemical building blocks that can be used as food additives, precursors in chemical synthesis, and plant growth promoting molecules. In this study, a low-cost lignocellulosic resource of pretreated corn stover was used as a carbon source to produce AC. After redirecting the metabolic flux, fine tuning reducing power, and eliminating carbon catabolite repression in Enterobacter cloacae SDM, a systematically engineered strain SDM 53 was constructed, which is able to utilize glucose and xylose efficiently and simultaneously. Using fed-batch fermentation of SDM 53, 45.6 g L-1 AC was produced at a rate of 1.52 g L-1 h(-1) using the lignocellulosic hydrolysate. Biotechnological synthesis of AC has various advantages such as being sustainable and environment-friendly. With its desirable properties, the engineered strain SDM 53 may be a potential choice for the industrial production of AC.
机译:乙缩醛(AC)被认为是糖类中潜力最大的化学组成部分之一,可用作食品添加剂,化学合成中的前体和促进植物生长的分子。在这项研究中,预处理玉米秸秆的低成本木质纤维素资源被用作生产AC的碳源。重新定向代谢通量,微调还原能力并消除阴沟肠杆菌SDM中的碳分解代谢物阻抑后,构建了系统工程化的菌株SDM 53,该菌株能够高效,同时利用葡萄糖和木糖。使用SDM 53的分批补料发酵,使用木质纤维素水解产物以1.52 g L-1 h(-1)的速率产生45.6 g L-1 AC。 AC的生物技术合成具有多种优势,例如可持续性和环境友好性。凭借其理想的性能,工程菌株SDM 53可能是AC工业生产的潜在选择。

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