Wang Peng, Jiao Youjing, Liu Shouxin
College of Chemical and Pharmaceutical Engineering, Hebei University of Science and Technology, Shijiazhuang, 050018, China,
J Ind Microbiol Biotechnol. 2014 Dec;41(12):1811-5. doi: 10.1007/s10295-014-1513-5. Epub 2014 Sep 28.
An efficient fermentation-strengthening approach was developed to improve the anaerobic production of propionic acid and vitamin B12 by co-fermentation with Propionibacterium freudenreichii. Vitamin B12 production from glucose resulted in relatively high productivity (0.35 mg/L h) but a low propionic acid yield (0.55 g/g). By contrast, glycerol gave a high propionic acid yield (0.63 g/g) but low productivity (0.16 g/L h). Co-fermentation of glycerol and glucose with a gradual addition strategy gave high yields (propionic acid: 0.71 g/g; vitamin B12: 0.72 mg/g) and productivities (propionic acid: 0.36 g/L h; vitamin B12: 0.36 mg/L h). Finally, the integrated feedstock and fermentation system strengthening strategy was demonstrated as an efficient method for the economic production of bio-based propionic acid and vitamin B12.
开发了一种有效的强化发酵方法,以通过与费氏丙酸杆菌共发酵来提高丙酸和维生素B12的厌氧产量。以葡萄糖生产维生素B12可获得相对较高的生产率(0.35毫克/升·小时),但丙酸产量较低(0.55克/克)。相比之下,甘油的丙酸产量较高(0.63克/克),但生产率较低(0.16克/升·小时)。采用逐步添加策略将甘油和葡萄糖进行共发酵,可获得较高的产量(丙酸:0.71克/克;维生素B12:0.72毫克/克)和生产率(丙酸:0.36克/升·小时;维生素B12:0.36毫克/升·小时)。最后,综合原料和发酵系统强化策略被证明是一种经济生产生物基丙酸和维生素B12的有效方法。