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通过动力学优化和柠檬酸代谢提高菊芋块茎中产 L-乳酸的干酪乳杆菌生产能力。

Enhancement of L-lactic acid production in Lactobacillus casei from Jerusalem artichoke tubers by kinetic optimization and citrate metabolism.

机构信息

School of Food Science, JiangNan University, People's Republic of China.

出版信息

J Microbiol Biotechnol. 2010 Jan;20(1):101-9.

Abstract

Efficient L-lactic acid production from Jerusalem artichoke tubers by Lactobacillus casei G-02 using simultaneous saccharification and fermentation (SSF) in fed-batch culture is demonstrated. The kinetic analysis in the SSF signified that the inulinase activity was subjected to product inhibition, while the fermentation activity of G-02 was subjected to substrate inhibition. It was also found that the intracellularly NOX activity was enhanced by the citrate metabolism, which increased the carbon flux of Embden-Meyerhof-Parnas (EMP) pathway dramatically, and resulted more ATP production. As a result, when the SSF was carried out at 40 degrees after the initial hydrolysis of 1 h with supplemented sodium citrate of 10g/L, L-lactic acid concentration of 141.5 g/L was obtained in 30 h with a volumetric productivity of 4.7 g/L/h. The conversion efficiency and product yield were 93.6% of the theoretical lactic acid yield and 52.4 g lactic acid/100 g Jerusalem artichoke flour, respectively. Such a high concentration of lactic acid with high productivity from Jerusalem artichoke has not been reported previously, and hence G-02 could be a potential candidate for economical production of L-lactic acid from Jerusalem artichoke at a commercial scale.

摘要

以菊芋块茎为原料,利用莱氏乳杆菌 G-02 进行同步糖化发酵(SSF)生产 L-乳酸。在 SSF 中的动力学分析表明,菊糖酶活性受到产物抑制,而 G-02 的发酵活性受到基质抑制。此外,还发现细胞内 NOX 活性受柠檬酸代谢的增强,这大大增加了 EMP 途径的碳通量,从而产生更多的 ATP。因此,当在初始水解 1 小时后,在 40°C 下进行 SSF,并补充 10g/L 的柠檬酸钠时,在 30 小时内可获得 141.5g/L 的 L-乳酸浓度,比产率为 4.7g/L/h。转化率和产物得率分别为理论乳酸产率的 93.6%和 52.4g 乳酸/100g 菊芋粉。以前从未报道过从菊芋中获得如此高浓度和高生产力的乳酸,因此 G-02 可能是在商业规模上从菊芋经济生产 L-乳酸的潜在候选菌株。

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