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Strain improvement by metabolic engineering: lysine production as a case study for systems biology

机译:通过代谢工程改进菌株:赖氨酸生产作为系统生物学的案例研究

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A central goal of systems biology is the elucidation of cell function and physiology through the integrated use of broad based genomic and physiological data. Such systemic approaches have been employed extensively in the past, as they are a central element of metabolic flux analysis, the distribution of kinetic control in pathways, and the key differentiating characteristic of metabolic engineering. In one case study, these tools have been applied to the improvement of lysine-producing strains of Corynebacterium glutamicum. The systematic study of the physiology of this organism allowed the identification of specific metabolic targets and subsequently led to significant improvements in product yield and productivity. This case study can serve as a guide for the development of systems biology tools for the utilization of large volumes of cell- and genome-wide transcriptional and physiological data.
机译:系统生物学的主要目标是通过综合使用广泛的基因组和生理数据来阐明细胞功能和生理学。过去,这类系统方法已被广泛采用,因为它们是代谢通量分析,路径中动力学控制分布以及代谢工程关键区别特征的核心要素。在一个案例研究中,这些工具已被用于改善谷氨酸棒状杆菌赖氨酸生产菌株。对这种生物的生理学的系统研究使确定特定的代谢目标成为可能,随后导致了产品产量和生产率的显着提高。该案例研究可以作为开发系统生物学工具的指南,以利用大量细胞和基因组范围的转录和生理数据。

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