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Bioconversion of inulin to 2,3-butanediol by a newly isolated Klebsiella pneumoniae producing inulinase

机译:菊粉的生物转化到2,3-丁二醇的新分离的克莱贝拉肺炎肺酸氨基酶产生菊粉酶

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摘要

Inulin could be converted to bio-based chemicals by an inulinase producer without external inulinase, and the production of 2,3-butanediol was less than 50 g/L. In this work, a novel inulinase producer of Klebsiella pneumoniae H3 was isolated, and inulinase catalytic properties as well as 2,3-butanediol fermentation were investigated. The enzyme was an intracellular inulinase with an optimal pH of 6 similar to 7 and a temperature of 30 degrees C. The use of inulin by H3 was dependent on the degree of polymerization (DP), and the average DP of inulin in fermentation broth increased from 2.82 to 8.08 in 24-h culture of batch fermentation. Acidic pretreatment was developed to increase inulin utilization by adjusting medium pH to 3.0 prior to sterilization. In batch fermentation with optimized medium and fermentation conditions, the concentration of target product (2,3-butanediol and acetoin) was 80.4 g/L with a productivity of 2.23 g/(L.h), and a yield of 0.426 g/g inulin.
机译:菊粉可以通过菊粉酶生产者转化为没有外氨基蛋白酶的生物酶生产的化学品,并且2,3-丁二醇的产生小于50g / L.在这项工作中,分离了一种新型菊粉蛋白酶生产者的Klebsiella pneumoniae H3,并研究了氨基硫脲酶催化性能以及2,3-丁二醇发酵。酶是一种与7的最佳pH的细胞内菊粉酶,其60℃和30℃的温度。通过H3的使用取决于聚合程度(DP),菊粉在发酵液中的平均dp增加在24小时的批量发酵培养中为2.82至8.08。开发酸性预处理以通过在灭菌之前将培养基pH调节至3.0来提高inulin利用。在分批发酵具有优化的培养基和发酵条件下,靶产物(2,3-丁二醇和乙酰脲)的浓度为80.4g / L,生产率为2.23g /(l.H),产率为0.426g / g菊粉。

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