School of Pharmaceutical Science and Technology, Tianjin University, Tianjin, 30072, China.
Biotechnol Lett. 2020 Jun;42(6):937-943. doi: 10.1007/s10529-020-02840-1. Epub 2020 Feb 17.
Development of an open-loop fed-batch protocol for highly reproducible fermentation of fission yeast that starts from batch cultures instead of glucose-limited aerobic chemostat cultures.
A new strategy was employed that consists of an exponential feeding phase followed by a starvation period and then a linear feeding phase. A comparison of several independent fed-batch fermentations of a recombinant fission yeast strain showed that while during the initial phase process parameters such as glucose consumption and CO evolution varied considerably as expected, they were much more uniform during the third phase. For instance, the normalized standard deviation of glucose consumption was thirty times higher during the exponential feeding phase of the fermentation that during the linear feeding phase.
These data demonstrate the usefulness of the proposed strategy. It is expected that by variation of only two parameters (the total amount of glucose fed in the initial phase and the time frame of the starvation phase) the protocol can easily be adapted to other microbes.
开发一种开环补料分批发酵方案,用于从批式培养物而不是葡萄糖限制的需氧恒化器培养物开始,对裂殖酵母进行高度可重现的发酵。
采用了一种新策略,包括指数喂养阶段,随后是饥饿阶段,然后是线性喂养阶段。对重组裂殖酵母菌株的几个独立补料分批发酵的比较表明,虽然在初始阶段,如葡萄糖消耗和 CO 释放等过程参数如预期的那样变化很大,但在第三阶段它们更加均匀。例如,在发酵的指数喂养阶段,葡萄糖消耗的归一化标准偏差是线性喂养阶段的三十倍。
这些数据证明了所提出策略的有用性。预计通过仅改变两个参数(初始阶段中添加的葡萄糖总量和饥饿阶段的时间框架),该方案可以轻松适应其他微生物。