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在低 pH 值条件下,通过需氧酵母解脂耶氏酵母的重组菌株生产丁二酸。

Production of succinic acid at low pH by a recombinant strain of the aerobic yeast Yarrowia lipolytica.

机构信息

Russian State Collection of Industrial Microorganisms, State Research Institute of Genetics and Selection of Industrial Microorganisms, 1-st Dorozhny pr., 1, Moscow, Russia.

出版信息

Biotechnol Bioeng. 2010 Nov 1;107(4):673-82. doi: 10.1002/bit.22859.

Abstract

Biotechnological production of weak organic acids such as succinic acid is most economically advantageous when carried out at low pH. Among naturally occurring microorganisms, several bacterial strains are known to produce considerable amounts of succinic acid under anaerobic conditions but they are inefficient in performing the low-pH fermentation due to their physiological properties. We have proposed therefore a new strategy for construction of an aerobic eukaryotic producer on the basis of the yeast Yarrowia lipolytica with a deletion in the gene coding one of succinate dehydrogenase subunits. Firstly, an original in vitro mutagenesis-based approach was proposed to construct strains with Ts mutations in the Y. lipolytica SDH1 gene. These mutants were used to optimize the composition of the media for selection of transformants with the deletion in the Y. lipolytica SDH2 gene. Surprisingly, the defects of each succinate dehydrogenase subunit prevented the growth on glucose but the mutant strains grew on glycerol and produced succinate in the presence of the buffering agent CaCO(3). Subsequent selection of the strain with deleted SDH2 gene for increased viability allowed us to obtain a strain capable of accumulating succinate at the level of more than 45 g L(-1) in shaking flasks with buffering and more than 17 g L(-1) without buffering. The possible effect of the mutations on the utilization of different substrates and perspectives of constructing an industrial producer is discussed.

摘要

在低 pH 值条件下进行生物催化生产,如琥珀酸等弱有机酸,在经济上最为有利。在天然存在的微生物中,有几种细菌菌株在厌氧条件下能够产生相当数量的琥珀酸,但由于其生理特性,它们在进行低 pH 值发酵时效率不高。因此,我们提出了一种新的策略,即在编码琥珀酸脱氢酶亚基之一的基因缺失的酵母解脂耶氏酵母(Yarrowia lipolytica)的基础上,构建好氧真核生物生产者。首先,提出了一种基于原始体外诱变的方法来构建 Y. lipolytica SDH1 基因 Ts 突变体的菌株。这些突变体被用于优化培养基的组成,以选择 Y. lipolytica SDH2 基因缺失的转化体。令人惊讶的是,每个琥珀酸脱氢酶亚基的缺陷阻止了在葡萄糖上的生长,但突变株在甘油上生长,并在缓冲剂 CaCO3 的存在下产生琥珀酸。随后,对缺失 SDH2 基因的菌株进行了提高生存能力的选择,使我们获得了一株能够在缓冲摇瓶中积累琥珀酸水平超过 45 g/L 的菌株,在没有缓冲剂的情况下积累水平超过 17 g/L。讨论了突变对不同底物利用的可能影响以及构建工业生产者的前景。

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