Wang Ze-Jian, Shi Hui-Lin, Wang Ping
State Key Laboratory of Bioreactor Engineering, Shanghai Institute of Biomanufacturing Technology & Collaborative Innovation Center, East China University of Science and Technology, P.O. Box 329, 130 Meilong Road, Shanghai, 200237, China.
Department of Biotechnology, Delft University of Technology, Julianalaan 67, 2628BC, Delft, The Netherlands.
Appl Biochem Biotechnol. 2016 Jul;179(6):1115-27. doi: 10.1007/s12010-016-2053-4. Epub 2016 Mar 29.
The relationship between the morphological character of Pseudomonas denitrificans and vitamin B12 synthesis based on real-time capacitance measurement and online specific oxygen consumption rate (Q O2) control was established for enhancing vitamin B12 production. Results demonstrated that the threshold Q O2 value lower than 2.0 mmol/gDCW/l would greatly stimulate the state transfer from the cell number growth phase to the cell elongation phase and promote rapid vitamin B12 biosynthesis, while the vitamin B12 biosynthesis rate could also be inhibited when the rate of cell's length-to-width ratio (ratio-LW) was higher than 10:1. Furthermore, the optimal morphology controlling strategy was achieved based on online Q O2 control, which increases the appropriate active cell numbers at the former phase, and then control the elongation of ratio-LW no more than 10:1 at the vitamin B12 biosynthesis phase. The maximal vitamin B12 production reached 239.7 mg/l at 168 h, which was improved by 14.7 % compared with the control (208 mg/l). This online controlling strategy would be effectively applied for improving industrial vitamin B12 fermentation.
为提高维生素B12的产量,基于实时电容测量和在线比耗氧速率(Q O2)控制,建立了反硝化假单胞菌的形态特征与维生素B12合成之间的关系。结果表明,低于2.0 mmol/gDCW/l的阈值Q O2值会极大地刺激细胞从数量增长阶段向细胞伸长阶段的状态转变,并促进维生素B12的快速生物合成,而当细胞长宽比(ratio-LW)高于10:1时,维生素B12的生物合成速率也会受到抑制。此外,基于在线Q O2控制实现了最佳形态控制策略,即在前期增加适当的活性细胞数量,然后在维生素B生物合成阶段将ratio-LW的伸长控制在不超过10:1。在168 h时,维生素B12的最大产量达到239.7 mg/l,与对照(208 mg/l)相比提高了14.7%。这种在线控制策略将有效地应用于改进工业维生素B12发酵。