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首页> 外文期刊>Biochemical Engineering Journal >Efficient ex-situ biosynthesis of vitamin B-12 by Propionibacterium freudenreichii using membrane separation coupling technology
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Efficient ex-situ biosynthesis of vitamin B-12 by Propionibacterium freudenreichii using membrane separation coupling technology

机译:使用膜分离耦合技术通过PropionibigaiQueRoichiii高效ex-situ BioS合成维生素B-12

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摘要

Propionibacterium freudenreichii has been successfully applied to industrial anaerobic production of vitamin B-12. In the traditional fed-batch fermentation process, 5,6-dimethylbenzimidazole (DMB) is used as a precursor. However, DMB can inhibit the synthesis of vitamin B-12 metabolic intermediates, which is not conducive to semicontinuous fermentation of P. freudenreichii. To improve the fermentation efficiency, vitamin B-12 ex-situ biosynthesis was proposed and a membrane separation coupling fermentation technology was designed with adenosylcobinamide (Ado-cbi) as the indicator signal. The results showed that P. freudenreichii cells should be partly separated online at 84 h with 0.22-mu m spiral membrane. The fourfold concentrated suspension was suitable for ex-situ biosynthesis of vitamin B-12 with the addition of 3.60 mg L-1 DMB at 30 degrees C and pH 7.0. In the semi-continuous coupling fermentation process, vitamin B-12 concentration reached 56.76 +/- 3.86 mg L-1 , an improvement of 161.6 %, while reutilizing fermentation wastewater and improving the anaerobic fermentation efficiency of P. freudenreichii.
机译:弗洛伊森重新胶种已经成功地应用于维生素B-12的工业厌氧生产。在传统的补料分批发酵过程中,5,6-二甲基双咪唑(DMB)用作前体。然而,DMB可以抑制维生素B-12代谢中间体的合成,这不利于P.Freudenreichii的半连次发酵。为了提高发酵效率,提出了维生素B-12前原位生物合成,并用腺苷酰基胺(ADO-CBI)设计了膜分离偶联发酵技术作为指示器信号。结果表明,P.Freudenreichii细胞应在84小时与0.22μmM螺旋膜部分分离在线分离。四重浓缩悬浮液适用于维生素B-12的原位生物合成,加入3.60mg L-1 DMB,30℃和pH7.0。在半连续耦合发酵过程中,维生素B-12浓度达到56.76 +/- 3.86 mg L-1,提高161.6%,同时再利用发酵废水,提高P.Freudenreichii的厌氧发酵效率。

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