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Model-based Analysis and Optimisation of a Continuous Corynebacterium glutamicum Bioprocess Utilizing Lignocellulosic Waste

机译:利用木质纤维素废物的连续棒状杆菌生物过程的模型分析与优化

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Lignocellulosic waste streams are an important sustainable alternative to conventional carbon sources for industrial biotechnology. However, lacking quantitative knowledge on cultivation behavior hampers process design and optimization. Using an unstructured kinetic model describing the growth of wild-typeCorynebacterium glutamicumon a lignocellulosic waste stream from pulping industry, we designed a continuous fermentation process with an optimized space time yield for biomass of 0.86 g L-1h-1and a residual concentration of metabolizable sugars in the effluent of less than 2 %. The model considers the growth on multiple interacting sugars and potentially inhibitory effects of lignocellulosic waste. After parametrization on historical data, the model was used to determine optimal setpoints of dilution rate and feed medium concentration. Sensitivity analysis of the model provided additional information on the importance of certain parameters during different process conditions and detected bottlenecks of strain physiology limiting the process design space. This model-based approach delivers valuable insights for process and strain engineering already at an early stage of bioprocess development.
机译:木质纤维素废物流是用于工业生物技术的传统碳源的重要可持续替代品。然而,缺乏关于培养行为的定量知识,妨碍了过程设计和优化。使用描述野生型谷氨酸谷氨酸的生长的非结构化动力学模型从制浆行业进行木质纤维素废物流,我们设计了一种连续的发酵过程,具有0.86g L-1H-1的生物量的优化空间时间产率,并在其中剩余浓度的代谢浓度流出物小于2%。该模型考虑了多种相互作用糖的增长和木质纤维素废物的潜在抑制作用。在历史数据上的参数化之后,该模型用于确定稀释率和饲料培养基浓度的最佳设定点。模型的敏感性分析提供了有关不同过程条件期间某些参数的重要性的额外信息,并检测到限制过程设计空间的应变生理学的瓶颈。这种基于模型的方法在生物过程开发的早期阶段提供了对过程和应变工程的宝贵见解。

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