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Switching industrial production processes from complex to defined media: method development and case study using the example of Penicillium chrysogenum

机译:将工业生产过程从复杂介质转换为特定介质:方法开发和案例研究(以产黄青霉为例)

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Background Filamentous fungi are versatile cell factories and widely used for the production of antibiotics, organic acids, enzymes and other industrially relevant compounds at large scale. As a fact, industrial production processes employing filamentous fungi are commonly based on complex raw materials. However, considerable lot-to-lot variability of complex media ingredients not only demands for exhaustive incoming components inspection and quality control, but unavoidably affects process stability and performance. Thus, switching bioprocesses from complex to defined media is highly desirable. Results This study presents a strategy for strain characterization of filamentous fungi on partly complex media using redundant mass balancing techniques. Applying the suggested method, interdependencies between specific biomass and side-product formation rates, production of fructooligosaccharides, specific complex media component uptake rates and fungal strains were revealed. A 2-fold increase of the overall penicillin space time yield and a 3-fold increase in the maximum specific penicillin formation rate were reached in defined media compared to complex media. Conclusions The newly developed methodology enabled fast characterization of two different industrial Penicillium chrysogenum candidate strains on complex media based on specific complex media component uptake kinetics and identification of the most promising strain for switching the process from complex to defined conditions. Characterization at different complex/defined media ratios using only a limited number of analytical methods allowed maximizing the overall industrial objectives of increasing both, method throughput and the generation of scientific process understanding.
机译:背景技术丝状真菌是多用途的细胞工厂,广泛用于大规模生产抗生素,有机酸,酶和其他与工业相关的化合物。实际上,采用丝状真菌的工业生产过程通常基于复杂的原料。但是,复杂培养基成分的批次间差异很大,不仅要求详尽的进料组件检查和质量控制,而且不可避免地会影响过程的稳定性和性能。因此,非常需要将生物过程从复杂的介质转换为确定的介质。结果本研究提出了使用冗余质量平衡技术对部分复杂培养基上的丝状真菌进行菌株鉴定的策略。应用所建议的方法,揭示了特定生物量和副产物形成速率,低聚果糖的产生,特定复杂培养基组分的摄取速率和真菌菌株之间的相互依赖性。与复杂培养基相比,在确定的培养基中,总青霉素时空产量增加了2倍,最大比青霉素形成速率增加了3倍。结论新开发的方法能够根据特定的复杂培养基组分吸收动力学,在复杂培养基上快速鉴定两种不同的工业产黄青霉候选菌株,并鉴定出最有希望的菌株,可将过程从复杂条件转变为确定条件。仅使用有限数量的分析方法在不同的复杂/确定的介质比率下进行表征,可以最大限度地提高提高方法通量和产生科学过程理解的总体工业目标。

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