Schlatmann J E, Moreno P R, Sellés M, Vinke J L, Ten Hoopen H J, Verpoorte R, Heijnen J J
Department of Biochemical Engineering, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands.
Biotechnol Bioeng. 1995 Jul 5;47(1):53-9. doi: 10.1002/bit.260470107.
The link between the growth stage and the production stage in a two-stage batch process was investigated using (filtered) inocula from different periods of the stationary phase of the growth cycle. In the production stage, ajmalicine production by Catharanthus roseus in a 3-L stirred tank reactor was induced with a high glucose concentration (80 g/L). Ajmalicine production in cultures started with cells from the late stationary phase was five times higher than in cultures started with cells from the early stationary phase. After transfer to the production stage, cells from the early stationary phase showed a transient increase in respiration and enzyme induction, followed by culture browning. In contrast, cells in the late stationary phase showed a typical induction pattern: constant respiration, and permanent enzyme induction. A striking similarity between the geraniol-10-hydroxylase (G10H) activity and the ajmalicine accumulation profile could be observed in all cultures, suggesting that G 10H regulated ajmalicine production in this investigation. The intracellular nitrate concentration was significantly higher in the inoculum showing a high ajmalicine production than in the inoculum with a low production. Consequently, nitrate may act as a marker for the start of the production stage: as soon as the nitrate is depleted in the growth medium secondary metabolism can be induced. (c) 1995 John Wiley & Sons, Inc.
在两阶段分批培养过程中,利用生长周期稳定期不同时段的(过滤后的)接种物研究了生长阶段与生产阶段之间的联系。在生产阶段,用高葡萄糖浓度(80 g/L)诱导长春花在3-L搅拌罐反应器中生产阿吗碱。以稳定期末期的细胞开始培养的阿吗碱产量比以稳定期初期的细胞开始培养的产量高五倍。转移到生产阶段后,稳定期初期的细胞呼吸和酶诱导出现短暂增加,随后培养物褐变。相比之下,稳定期末期的细胞呈现典型的诱导模式:呼吸稳定,酶诱导持续。在所有培养物中均观察到香叶醇-10-羟化酶(G10H)活性与阿吗碱积累曲线之间存在显著相似性,这表明在本研究中G10H调节阿吗碱的生产。阿吗碱产量高的接种物中的细胞内硝酸盐浓度显著高于产量低的接种物。因此,硝酸盐可能作为生产阶段开始的标志:一旦生长培养基中的硝酸盐耗尽,次级代谢就可以被诱导。(c)1995约翰威立父子公司