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L-lysine production improvement: a review of the state of the art and patent landscape focusing on strain development and fermentation technologies

机译:L-赖氨酸的生产改进:对艺术技术和专利景观的综述,专注于应变发育和发酵技术

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L-lysine is an essential amino acid used in various industrial sectors but mainly in food and animal feed. Intense research has been directed toward increasing its productivity. This literature review presents the state of the art and patent landscape of the industrial production of L-lysine, with a focus on the strain development and fermentation technologies, through geographic, social, and chronological analysis, using the text mining technique. The geographic analysis showed a greater tendency for countries with industrial plants with large production capacity to submit patents or publish articles, while the social analysis reflected the close relationship between educational units and companies. The technologies of each document were divided into optimization of fermentation parameters, conventional mutation, and genetic engineering. Corynebacterium glutamicum and Escherichia coli present the most attractive industrial phenotypes, and their cultivation occurs mainly in fed-batch processes with control parameters carefully selected to enhance metabolism. These strains are generally modified by conventional approaches (e.g., mutagenesis and selection of auxotrophic and/or regulatory mutants) or by genetic engineering technologies. The combination of both these approaches enables genomic breeding and the construction of strains with industrial potential, capable of accumulating more than 120 g/L of L-lysine. From the analysis of these approaches, we developed a descriptive flow of substrate uptake, amino acid metabolism, and mechanisms of excretion of a lysine-producing model cell. It is expected that the various mechanisms of L-lysine production, here shown and described, will become a guide that aids in increasing amino acid productivity without interfering with the strain stability.
机译:L-赖氨酸是各种工业部门的必需氨基酸,但主要用于食品和动物饲料。激烈的研究旨在提高生产率。该文献综述介绍了L-赖氨酸工业生产的现有技术和专利景观,专注于使用文本挖掘技术,通过地理,社会和年代学分析来关注应变开发和发酵技术。地理分析表现出具有大量生产能力的工业设备的国家更大的趋势,以提出专利或发布文章,而社会分析则反映了教育单位和公司之间的密切关系。每份文件的技术分为发酵参数,常规突变和基因工程的优化。 CoryneBacterium谷氨酰胺和大肠杆菌呈现最具吸引力的工业表型,它们的培养主要发生在FED批处理过程中,仔细选择控制参数以增强代谢。这些菌株通常通过常规方法(例如,诱变和选择营养营养和/或调节突变体)或基因工程技术来修改。两种方法的组合使基因组育种和具有工业电位的菌株的构建能够积累超过120克莱赖氨酸的产量。根据这些方法的分析,我们开发了一种描述性的底物吸收,氨基酸代谢和产生赖氨酸模型细胞的排泄机制。预期,这里显示和描述的L-赖氨酸产生的各种机制将成为有助于增加氨基酸生产率而不干扰应变稳定性的指导。

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