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首页> 外文期刊>Applied Microbiology and Biotechnology >Laboratory metabolic evolution improves acetate tolerance and growth on acetate of ethanologenic Escherichia coli under non-aerated conditions in glucose-mineral medium
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Laboratory metabolic evolution improves acetate tolerance and growth on acetate of ethanologenic Escherichia coli under non-aerated conditions in glucose-mineral medium

机译:在葡萄糖矿物质培养基中,在非曝气条件下,实验室代谢的演变改善了乙酸盐的耐受性以及产乙醇大肠杆菌的乙酸盐的生长

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In this work, Escherichia coli MG1655 was engineered to produce ethanol and evolved in a laboratory process to obtain an acetate tolerant strain called MS04 (E. coli MG1655: ΔpflB, ΔadhE, ΔfrdA, ΔxylFGH, ΔldhA, PpflB::pdc_(Zm)-adhB_(Zm), evolved). The growth and ethanol production kinetics of strain MS04 were determined in mineral medium, mainly under non-aerated conditions, supplemented with glucose in the presence of different concentrations of sodium acetate at pH 7.0 and at different values of acid pH and a constant concentration of sodium acetate (2 g/l). Results revealed an increase in the specific growth rate, cell mass formation, and ethanol volumetric productivity at moderate concentrations of sodium acetate (2-10 g/l), in addition to a high tolerance to acetate because it was able to grow and produce a high yield of ethanol in the presence of up to 40 g/l of sodium acetate. Genomic analysis of the ΔpflB evolved strain identified that a chromosomal deletion of 27.3 kb generates the improved growth and acetate tolerance in MG1655 ΔpflB derivative strains. This deletion comprises genes related to the respiration of nitrate, repair of alkylated DNA and synthesis of the ompC gene coding for porin C, cytochromes C, thiamine, and colonic acid. Strain MS04 is advantageous for the production of ethanol from hemicellulosic hydrolysates that contain acetate.
机译:在这项工作中,大肠杆菌MG1655被工程化以生产乙醇,并在实验室过程中进化以获得称为MS04的耐乙酸盐菌株(大肠杆菌MG1655:ΔpflB,ΔadhE,ΔfrdA,ΔxylFGH,ΔldhA,PpflB :: pdc_(Zm)- adhB_(Zm),进化)。在矿物培养基中,主要是在非曝气条件下,在存在不同浓度的乙酸钠,pH 7.0,酸性pH和恒定浓度的钠的条件下,在葡萄糖条件下,测定菌株MS04的生长和乙醇生成动力学。醋酸盐(2克/升)。结果表明,在中等浓度的乙酸钠(2-10 g / l)下,比生长速率,细胞团形成和乙醇体积生产率提高,并且对乙酸盐的耐受性高,因为它能够生长并产生乙酸。在乙酸钠高达40 g / l的情况下,乙醇的收率很高。对ΔpflB进化菌株的基因组分析确定,在MG1655ΔpflB衍生菌株中27.3 kb的染色体缺失产生了改善的生长和乙酸盐耐受性。该缺失包括与硝酸盐的呼吸,烷基化的DNA的修复以及编码孔蛋白C,细胞色素C,硫胺素和结肠酸的ompC基因的合成有关的基因。菌株MS04有利于由含有乙酸盐的半纤维素水解产物生产乙醇。

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