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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Activation of glycerol metabolic pathway by evolutionary engineering of Rhizopus oryzae to strengthen the fumaric acid biosynthesis from crude glycerol
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Activation of glycerol metabolic pathway by evolutionary engineering of Rhizopus oryzae to strengthen the fumaric acid biosynthesis from crude glycerol

机译:通过米根霉的进化工程激活甘油代谢途径,以增强粗甘油中富马酸的生物合成

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摘要

Rhizopus oryzae is strictly inhibited by biodiesel-based by-product crude glycerol, which results in low fumaric acid production. In this study, evolutionary engineering was employed to activate the glycerol utilization pathway for fumaric acid production. An evolved strain G80 was selected, which could tolerate and utilize high concentrations of crude glycerol to produce 14.9 g/L fumaric acid with a yield of 0.248 g/g glycerol. Key enzymes activity analysis revealed that the evolved strain displayed a significant upregulation in glycerol dissimilation, pyruvate consumption and reductive tricarboxylic acid pathways, compared with the parent strain. Subsequently, intracellular metabolic profiling analysis showed that amino acid biosynthesis, tricarboxylic acid cycle, fatty acid and stress response metabolites accounted for metabolic difference between two strains. Moreover, a glycerol fed-batch strategy was optimized to obtain the highest fumaric acid production of 25.5 g/L, significantly increased by 20.9-fold than that of the parent strain of 1.2 g/L. (C) 2015 Elsevier Ltd. All rights reserved.
机译:基于生物柴油的副产物粗甘油严格抑制米根霉,导致富马酸产量低。在这项研究中,采用进化工程来激活富马酸生产中的甘油利用途径。选择了进化菌株G80,其可以耐受并利用高浓度的粗甘油来生产14.9 g / L的富马酸,其产量为0.248 g / g的甘油。关键酶活性分析表明,与亲本菌株相比,进化后的菌株在甘油的异化,丙酮酸消耗和还原性三羧酸途径上显示出明显的上调。随后,细胞内代谢谱分析表明,氨基酸的生物合成,三羧酸循环,脂肪酸和应激反应代谢物是造成两个菌株之间代谢差异的原因。此外,对甘油补料分批策略进行了优化,以获得最高的富马酸产量25.5 g / L,比亲本菌株的1.2 g / L显着提高了20.9倍。 (C)2015 Elsevier Ltd.保留所有权利。

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