通过高效的生物技术从纤维素衍生的糖中生产光活性l -乳酸,发展可持续社会

M. Abdel-Rahman, T. Zendo, K. Sonomoto, Y. Tashiro
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引用次数: 0

摘要

由于糖化酶的高成本以及最终水解产物葡萄糖和纤维素二糖引起的反馈抑制,有效利用纤维素生物质作为乳酸生产的原料仍然存在问题。在这项研究中,我们证明了蒙氏肠球菌QU 25是一种新分离的乳酸菌,能够有效地利用纤维素二糖。在批量发酵中,100 g/L纤维素二糖产生89.8 g/L的L-乳酸,产率为91.3 (%)g/g消耗糖。此外,该菌株能够同时利用葡萄糖/纤维素二糖混合物高效生产l -乳酸,而没有明显的分解代谢抑制,从而可以完全利用所有释放的糖并获得高l -乳酸产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of sustainable society through efficient biotechnological production of optically active L-lactic acid from cellulose-derived sugars
Effective utilization of cellulosic biomass as a feedstock for lactic acid production is still problematic due to high cost of saccharifying enzymes combined with feedback inhibition caused by final hydrolysis products, glucose and cellobiose. In this study we demonstrated that Enterococcus mundtii QU 25, a newly isolated lactic acid bacterium, is able to utilize cellobiose efficiently. In batch fermentations, 89.8 g/L of L-lactic acid was produced from 100 g/L cellobiose at yield of 91.3 (%) g/g-consumed sugar. Moreover, this strain capable of utilizing glucose/cellobiose mixture simultaneously for efficient production of L-lactic acid without apparent catabolite repression, thereby allowing complete utilization of all released sugars combined high L-lactic acid production yield.
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