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Development of bio-based fine chemicalproduction through synthetic bioengineering

机译:生物基精细化工的发展通过合成生物工程生产

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摘要

Fine chemicals that are physiologically active, such as pharmaceuticals, cosmetics, nutritional supplements, flavoring agents as well as additives for foods, feed, and fertilizer are produced by enzymatically or through microbial fermentation. The identification of enzymes that catalyze the target reaction makes possible the enzymatic synthesis of the desired fine chemical. The genes encoding these enzymes are then introduced into suitable microbial hosts that are cultured with inexpensive, naturally abundant carbon sources, and other nutrients. Metabolic engineering create efficient microbial cell factories for producing chemicals at higher yields. Molecular genetic techniques are then used to optimize metabolic pathways of genetically and metabolically well-characterized hosts. Synthetic bioengineering represents a novel approach to employ a combination of computer simulation and metabolic analysis to design artificial metabolic pathways suitable for mass production of target chemicals in host strains. In the present review, we summarize recent studies on bio-based fine chemical production and assess the potential of synthetic bioengineering for further improving their productivity.
机译:具有生理活性的精细化学品,例如药物,化妆品,营养补品,调味剂以及食品,饲料和肥料的添加剂,是通过酶促发酵或微生物发酵生产的。催化目标反应的酶的鉴定使得所需精细化学品的酶促合成成为可能。然后,将编码这些酶的基因导入合适的微生物宿主中,然后用廉价的,自然丰富的碳源和其他营养物质进行培养。代谢工程创造了高效的微生物细胞工厂,用于以更高的产量生产化学品。然后使用分子遗传技术来优化遗传和代谢特性良好的宿主的代谢途径。合成生物工程学代表了一种新颖的方法,该方法结合了计算机模拟和代谢分析来设计适用于在宿主菌株中大规模生产目标化学品的人工代谢途径。在本综述中,我们总结了有关生物基精细化工生产的最新研究,并评估了合成生物工程技术进一步提高其生产率的潜力。

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