Toyota Central R&D Labs., Inc., 41-1 Yokomichi, Nagakute, Aichi 480-1192, Japan.
J Biosci Bioeng. 2013 Feb;115(2):193-5. doi: 10.1016/j.jbiosc.2012.08.021. Epub 2012 Sep 27.
A simple fed-batch system for cultivating genetically engineered yeast generating lactate under the regulation of the PDC1 promoter was established. Traditional strategies that avoid occurrence of Crabtree effect, such as respiratory quotient (RQ) control or ethanol control, are not applicable to the strain because of reduced generation of ethanol and CO(2) by-products. In this system, the feed rate increased when the pH was >5.0, and decreased when the pH was <5.0. Using this system, cell yields on sucrose increased by approximately 30% compared to that with the conventional RQ control method, due to the early detection of occurrence of Crabtree effect by pH decrease.
建立了一种简单的补料分批培养系统,用于在 PDC1 启动子的调控下培养产生乳酸的基因工程酵母。由于产生的乙醇和 CO2 副产物减少,避免 Crabtree 效应的传统策略,如呼吸商(RQ)控制或乙醇控制,不适用于该菌株。在该系统中,当 pH 值>5.0 时,进料速率增加,当 pH 值<5.0 时,进料速率降低。与传统的 RQ 控制方法相比,使用该系统可以使蔗糖上的细胞产率增加约 30%,这是由于通过 pH 值降低早期检测到 Crabtree 效应的发生。