Department of Chemical Engineering, University of California at Berkeley, Berkeley, CA 94702, USA.
Biotechnol Bioeng. 1993 Jan 20;41(2):221-30. doi: 10.1002/bit.260410208.
An optimized, defined minimal medium was developed to support balanced growth of Escherichia coli X90 harboring a recombinant plasmid. Foreign protein expression was repressed in these studies. A pulse injection technique was used to identify the growth responses to nutrients in a chemostat. Once the nutrients essential for growth had been identified, the yield coefficients for individual medium components. These yield coefficients were used to develop an optimized, glucose-limited defined minimal medium that supports balanced cell growth in chemostat culture. The biomass and substrate concentrations follow the Monod chemostat model. The maximum specific growth rate determined in a washout experiment is 0.87 h(-1) for this strain in the optimized medium. the glucose yield factor is 0.42 g DCW/g glucose and the maintenance coefficient is zero in the glucose-limited chemostat culture.
开发了一种优化的、定义明确的最小培养基,以支持携带重组质粒的大肠杆菌 X90 的平衡生长。在这些研究中外源蛋白表达受到抑制。脉冲注射技术用于在恒化器中鉴定对营养物质的生长反应。一旦确定了生长所必需的营养物质,就可以确定单个培养基成分的产率系数。这些产率系数用于开发一种优化的、葡萄糖有限的定义明确的最小培养基,以支持恒化器培养中的平衡细胞生长。生物量和基质浓度遵循 Monod 恒化器模型。在优化培养基中,通过冲洗实验确定的最大比生长速率为 0.87 h(-1)。在葡萄糖限制的恒化器培养中,葡萄糖产率系数为 0.42 g DCW/g 葡萄糖,维持系数为零。