College of Biological Science and Technology, Fuzhou University, Fuzhou, 350108, China.
J Biosci Bioeng. 2011 Jul;112(1):26-31. doi: 10.1016/j.jbiosc.2011.03.006. Epub 2011 Apr 2.
Natural 2-phenylethanol (PEA) could be produced on a large scale by way of bioconversion with yeast from l-phenylalanine. In this work the synergistic inhibition effect of the target product PEA and the byproduct ethanol on the bioconversion rate by Saccharomyces cerevisiae R-UV3 was systematically studied and a new kinetic model with an item representing the synergistic effect was proposed. Optimization strategies to repress the inhibition effect of PEA and ethanol were carried out in the mode of fed-batch culture with ISPR. The glucose concentration was regulated at the level of 0.2±0.1g/L by controlling a suitable respiratory quotient on line, which could limit the accumulation of the ethanol lower than 10g/L. In the presence of resin FD0816 with a weight of 10% of the medium, PEA was removed from the broth and the overall PEA concentration and the space-time yield reached 13.7g/L and 0.39g L(-1) h(-1) respectively. The semi-continuous process with ISPR was performed, in which the replacement of the resin was operated repeatedly when the aqueous PEA was over 2.7g/L and bioconversion continued until the bioactivity of the yeast cells declined, consequently achieving a final overall PEA concentration of 32.5g/L and a space-time yield of 0.45g L(-1) h(-1).
天然 2-苯乙醇(PEA)可以通过酵母从 L-苯丙氨酸生物转化大规模生产。在这项工作中,系统研究了目标产物 PEA 和副产物乙醇对酿酒酵母 R-UV3 生物转化率的协同抑制作用,并提出了一个新的包含协同作用项的动力学模型。采用 ISPR 分批补料培养的方式,对 PEA 和乙醇抑制作用的优化策略进行了研究。通过在线控制合适的呼吸商,将葡萄糖浓度调节在 0.2±0.1g/L 水平,可将乙醇积累限制在 10g/L 以下。在重量为培养基 10%的 FD0816 树脂存在下,PEA 从发酵液中被去除,PEA 的总浓度和时空产率分别达到 13.7g/L 和 0.39g L(-1) h(-1)。采用 ISPR 进行半连续过程,当水相 PEA 超过 2.7g/L 时,重复进行树脂更换操作,并且在酵母细胞的生物活性下降之前继续进行生物转化,最终达到 32.5g/L 的总 PEA 浓度和 0.45g L(-1) h(-1)的时空产率。