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[5-酮基-D-葡萄糖酸生产发酵条件的优化]

[Optimization of the fermentation conditions for 5-keto-D-gluconic acid production].

作者信息

Li Boyi, Pan Haifeng, Sun Weirong, Cheng Yongqing, Xie Zhipeng, Zhang Jianguo

出版信息

Sheng Wu Gong Cheng Xue Bao. 2014 Sep;30(9):1486-90.

Abstract

Gluconobacter oxydans converts glucose to gluconic acid and subsequently to 5-keto-D-gluconic acid (5-KGA), a precursor of industrially important L(+)-tartaric acid. To increase the yield of 5-KGA, fermentation conditions of 5-KGA production was optimized. Under the optimum medium and culture conditions in the shake flask, the highest 5-KGA production reached 19.7 g/L, increased by 43.8% after optimization. In a 5-L bioreactor, the pH was controlled at 5.5 and dissolved oxygen (DO) at 15%, 5-KGA production reached 46.0 g/L, raised at least 1.3 times than in the shake flask. Glucose feeding fermentation process was further developed, and the highest 5-KGA production of 75.5 g/L with 70% of yield was obtained, 32.0% higher than the highest reported value. Therefore, this newly developed fermentation process provided a practical and effective alternative for the commercial production of 5-KGA, and further of L(+)-tartaric acid.

摘要

氧化葡萄糖杆菌将葡萄糖转化为葡萄糖酸,随后再转化为5-酮基-D-葡萄糖酸(5-KGA),5-KGA是工业上重要的L(+)-酒石酸的前体。为了提高5-KGA的产量,对5-KGA生产的发酵条件进行了优化。在摇瓶中的最佳培养基和培养条件下,5-KGA的最高产量达到19.7 g/L,优化后提高了43.8%。在5-L生物反应器中,将pH控制在5.5,溶解氧(DO)控制在15%,5-KGA产量达到46.0 g/L,比摇瓶中至少提高了1.3倍。进一步开发了葡萄糖补料发酵工艺,获得了最高5-KGA产量75.5 g/L,产率为70%,比报道的最高值高32.0%。因此,这种新开发的发酵工艺为5-KGA的商业化生产以及进一步生产L(+)-酒石酸提供了一种实用且有效的替代方法。

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