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开发一种半连续两阶段同步糖化发酵工艺以提高产酸克雷伯菌生产2,3-丁二醇的产量

Development of a semi-continuous two-stage simultaneous saccharification and fermentation process for enhanced 2,3-butanediol production by Klebsiella oxytoca.

作者信息

Moon S-K, Kim D-K, Park J M, Min J, Song H

机构信息

Department of Bioprocess Engineering, Chonbuk National University, Jeonju, Korea.

Changhae Advanced Institute of Technology, Changhae Ethanol Co., Ltd., Jeonju, Korea.

出版信息

Lett Appl Microbiol. 2018 Apr;66(4):300-305. doi: 10.1111/lam.12845. Epub 2018 Feb 2.

Abstract

UNLABELLED

Klebsiella oxytoca naturally produces a large amount of 2,3-butanediol (2,3-BD), a promising chemical with wide industrial applications, along with various by-products. Previously, we have developed a metabolically engineered K. oxytoca ΔldhA ΔpflB strain to reduce the formation of by-products. To improve 2,3-BD productivity and examine the stability of K. oxytoca ΔldhA ΔpflB strain for industrial application, a semi-continuous two-stage simultaneous saccharification and fermentation (STSSF) process was developed. The STSSF with the K. oxytoca ΔldhA ΔpflB mutant using cassava as a carbon source could produce 108 ± 3·73 g  l with a yield of 0·45 g  g and a productivity of 3·00 g l  h . No apparent changes in the final titre, yield and productivity of 2,3-BD were observed for up to 20 cycles of STSSF. Also, microbial contamination and spontaneous mutation of the host strain with potential detrimental effects on fermentation efficiency did not occur during the whole fermentation period. These results strongly underpin that the K. oxytoca ΔldhA ΔpflB mutant is stable and that the STSSF process is commercially exploitable.

SIGNIFICANCE AND IMPACT OF THE STUDY

There is growing interest in the production of 2,3-butanediol (2,3-BD) from renewable resources by microbial fermentation because of its wide applications to specialty and commodity chemical industries. Klebsiella oxytoca usually produces 2,3-BD as a major end product during the fermentation of carbohydrates. This is the first study to provide a high-efficiency simultaneous saccharification and 2,3-BD fermentation process. Also, this study proves the stability of a metabolically engineered 2,3-BD overproducing K. oxytoca strain for industrial application.

摘要

未标记

产酸克雷伯菌天然会产生大量2,3 - 丁二醇(2,3 - BD),这是一种具有广泛工业应用前景的化学品,同时还会产生各种副产物。此前,我们构建了代谢工程改造的产酸克雷伯菌ΔldhAΔpflB菌株以减少副产物的形成。为提高2,3 - BD的生产效率并考察产酸克雷伯菌ΔldhAΔpflB菌株在工业应用中的稳定性,我们开发了一种半连续两阶段同步糖化发酵(STSSF)工艺。以木薯为碳源,使用产酸克雷伯菌ΔldhAΔpflB突变体进行的STSSF可产生108±3.73 g/l的2,3 - BD,产量为0.45 g/g,生产效率为3.00 g/(l·h)。在多达20个循环的STSSF过程中,未观察到2,3 - BD的最终产量、产率和生产效率有明显变化。此外,在整个发酵期间未发生对发酵效率有潜在不利影响的宿主菌株的微生物污染和自发突变。这些结果有力地证明了产酸克雷伯菌ΔldhAΔpflB突变体是稳定的,且STSSF工艺具有商业开发价值。

研究的意义和影响

由于2,3 - 丁二醇(2,3 - BD)在特种和日用化工行业有广泛应用,通过微生物发酵从可再生资源生产2,3 - BD越来越受到关注。产酸克雷伯菌在碳水化合物发酵过程中通常将2,3 - BD作为主要终产物。这是第一项提供高效同步糖化和2,3 - BD发酵工艺的研究。此外,本研究证明了代谢工程改造的2,3 - BD高产产酸克雷伯菌菌株在工业应用中的稳定性。

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