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In Silico Identification of Gene Amplification Targets for Improvement of Lycopene Production

机译:在计算机上鉴定提高番茄红素产量的基因扩增靶标

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The identification of genes to be deleted or amplified is an essential step in metabolic engineering for strain improvement toward the enhanced production of desired bioproducts. In the past, several methods based on flux analysis of genome-scale metabolic models have been developed for identifying gene targets for deletion. Genome-wide identification of gene targets for amplification, on the other hand, has been rather difficult. Here, we report a strategy called f lux s canning based on e nforced o bjective f lux (FSEOF) to identify gene amplification targets. FSEOF scans all the metabolic fluxes in the metabolic model and selects fluxes that increase when the flux toward product formation is enforced as an additional constraint during flux analysis. This strategy was successfully employed for the identification of gene amplification targets for the enhanced production of the red-colored antioxidant lycopene. Additional metabolic engineering based on gene knockout simulation resulted in further synergistic enhancement of lycopene production. Thus, FSEOF can be used as a general strategy for selecting genome-wide gene amplification targets in silico .
机译:鉴定要缺失或扩增的基因是代谢工程中用于改进菌株以提高所需生物产物产量的必不可少的步骤。过去,已经开发了几种基于通量分析的基因组规模代谢模型的方法来鉴定缺失的基因靶标。另一方面,全基因组鉴定用于扩增的基因靶标是相当困难的。在这里,我们报告一种基于强制性射流(FSEOF)来识别基因扩增目标的策略,称为射流装罐。 FSEOF扫描代谢模型中的所有代谢通量,并选择当通向产品形成的通量被强制作为通量分析期间的附加约束时增加的通量。此策略已成功用于鉴定基因扩增靶点,以增强红色抗氧化剂番茄红素的产量。基于基因敲除模拟的其他代谢工程导致番茄红素生产的进一步协同增强。因此,FSEOF可以用作在计算机中选择全基因组范围的基因扩增靶标的一般策略。

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