首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced L-ornithine production by systematic manipulation of L-ornithine metabolism in engineered Corynebacterium glutamicum S9114
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Enhanced L-ornithine production by systematic manipulation of L-ornithine metabolism in engineered Corynebacterium glutamicum S9114

机译:通过系统操纵L-鸟氨酸代谢在工程化棒状杆菌S9114中的L-鸟氨酸代谢增强L-鸟氨酸产生

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摘要

L-Ornithine is a non-protein amino acid with extensive applications in medicine and the food industry. Currently, L-ornithine is produced by microbial fermentation; however, this process needs to be further improved in terms of L-ornithine productivity and cost reduction. In this study, overexpression of LysE was observed to increase L-ornithine production in engineered Corynebacterium glutamicum S9114. To overcome the drawbacks of using a plasmid to express LysE, P-tac, a strong promoter, was inserted in the upstream region of lysE on the chromosome. This strain was further engineered by attenuating the expression of ncgl2228 and proB, and enhancing the expression of gdh and argCJBD. Combination of those targets resulted in L-ornithine production at a titer of 25 g/L, which was 63.4% higher than that produced by the original strain (15.3 g/L). These results demonstrated the positive effects of overexpressing LysE on L-ornithine production and provided novel targets for developing L-ornithine-producing C. glutamicum strains.
机译:L-鸟氨酸是一种非蛋白质氨基酸,具有广泛的医学和食品工业应用。目前,L-鸟氨酸由微生物发酵产生;然而,在L-鸟氨酸生产力和降低成本方面需要进一步改善该过程。在这项研究中,观察到莱斯证的过表达,以增加工程化的棒状杆菌S9114中的L-鸟氨酸生产。为了克服使用质粒表达莱亚体的缺点,将P-TAC,强启动子插入染色体上的Lyse上游区域。通过衰减NCGL2228和探测的表达和增强GDH和ARGCJBD的表达,进一步改造该菌株。这些靶标的组合导致L-鸟嘌呤产生的滴度为25g / L,比原始菌株(15.3g / L)产生的63.4%。这些结果证明过表达γSE对L-鸟氨酸产生的积极作用,并提供了用于产生L-鸟氨酸的C.谷氨酸菌株的新靶标。

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