Dept. Ingegneria Industriale, Università di Salerno, Via Ponte Don Melillo, 84084 Fisciano, Salerno, Italy.
Biochem Biophys Res Commun. 2011 Oct 28;414(3):604-11. doi: 10.1016/j.bbrc.2011.09.129. Epub 2011 Oct 2.
A systematic investigation on the effects of auxotrophies on the performance of yeast in aerated fed-batch reactor was carried out. Six isogenic strains from the CEN.PK family of Saccharomyces cerevisiae, one prototroph and five auxotrophs, were grown in aerated fed-batch reactor using the same operative conditions and a proper nutritional supplementation. The performance of the strains, in terms of final biomass decreased with increasing the number of auxotrophies. Auxotrophy for leucine exerted a profound negative effect on the performance of the strains. Accumulation of reactive oxygen species (ROS) in the cells of the strain carrying four auxotrophies and its significant viability loss, were indicative of an oxidative stress response induced by exposure of cells to the environmental conditions. The mathematical model was fundamental to highlight how the carbon flux, depending on the number and type of auxotrophies, was diverted towards the production of increasingly large quantities of energy for maintenance.
我们对缺陷型菌株在通气分批补料培养中的性能进行了系统的研究。我们使用相同的操作条件和适当的营养补充,在通气分批补料培养中培养了来自酿酒酵母 CEN.PK 家族的 6 个同源菌株,其中 1 株是野生型,5 株是缺陷型。从最终生物量的角度来看,菌株的性能随着缺陷型数量的增加而降低。亮氨酸缺陷型对菌株的性能产生了深远的负面影响。在携带 4 种缺陷型的菌株细胞中,活性氧(ROS)的积累及其显著的活力丧失,表明细胞在暴露于环境条件下发生了氧化应激反应。该数学模型对于突出碳通量如何根据缺陷型的数量和类型而发生变化,从而将其转向用于维持的越来越大量的能量生产具有重要意义。