William G. Lowrie Department of Chemical and Biomolecular Engineering, The Ohio State University, 140 West 19th Avenue, Columbus, OH 43210, USA.
Elixir Bioscience LLC, 1119 Jewel Creek Dr., Cary, NC 27519, USA.
Bioresour Technol. 2015 Jan;175:374-81. doi: 10.1016/j.biortech.2014.10.046. Epub 2014 Oct 22.
The effects of CO2 on propionic acid production and cell growth in glycerol or glucose fermentation were investigated in this study. In glycerol fermentation, the volumetric productivity of propionic acid with CO2 supplementation reached 2.94g/L/day, compared to 1.56g/L/day without CO2. The cell growth using glycerol was also significantly enhanced with CO2. In addition, the yield and productivity of succinate, the main intermediate in Wood-Werkman cycle, increased 81% and 280%, respectively; consistent with the increased activities of pyruvate carboxylase and propionyl CoA transferase, two key enzymes in the Wood-Werkman cycle. However, in glucose fermentation CO2 had minimal effect on propionic acid production and cell growth. The carbon flux distributions using glycerol or glucose were also analyzed using a stoichiometric metabolic model. The calculated maintenance coefficient (mATP) increased 100%, which may explain the increase in the productivity of propionic acid in glycerol fermentation with CO2 supplement.
本研究考察了 CO2 对甘油或葡萄糖发酵中丙酸生产和细胞生长的影响。在甘油发酵中,添加 CO2 后丙酸的比生产率达到 2.94g/L/天,而不添加 CO2 时为 1.56g/L/天。使用甘油时,细胞生长也得到了显著增强。此外,琥珀酸(Wood-Werkman 循环的主要中间产物)的产率和生产率分别提高了 81%和 280%;与 Wood-Werkman 循环中的两个关键酶丙酮酸羧化酶和丙酰 CoA 转移酶的活性增加一致。然而,在葡萄糖发酵中,CO2 对丙酸生产和细胞生长的影响很小。还使用化学计量代谢模型分析了使用甘油或葡萄糖的碳通量分布。计算出的维持系数(mATP)增加了 100%,这可以解释在补充 CO2 的甘油发酵中丙酸生产率的提高。