JOURNAL ARTICLE

Metabolic Engineering of Escherichia coli for Efficient Conversion of Glycerol to Ethanol

Cong T. TrinhFriedrich Srienc

Year: 2009 Journal:   Applied and Environmental Microbiology Vol: 75 (21)Pages: 6696-6705   Publisher: American Society for Microbiology

Abstract

ABSTRACT Based on elementary mode analysis, an Escherichia coli strain was designed for efficient conversion of glycerol to ethanol. By using nine gene knockout mutations, the functional space of the central metabolism of E. coli was reduced from over 15,000 possible pathways to a total of 28 glycerol-utilizing pathways that support cell function. Among these pathways are eight aerobic and eight anaerobic pathways that do not support cell growth but convert glycerol into ethanol with a theoretical yield of 0.50 g ethanol/g glycerol. The remaining 12 pathways aerobically coproduce biomass and ethanol from glycerol. The optimal ethanol production depends on the oxygen availability that regulates the two competing pathways for biomass and ethanol production. The coupling between cell growth and ethanol production enabled metabolic evolution of the designed strain through serial dilution that resulted in strains with improved ethanol yields and productivities. In defined medium, the evolved strain can convert 40 g/liter of glycerol to ethanol in 48 h with 90% of the theoretical ethanol yield. The performance of the designed strain is predicted by the property space of remaining elementary modes.

Keywords:
Glycerol Ethanol Ethanol fuel Escherichia coli Biochemistry Chemistry Metabolic engineering Yield (engineering) Biomass (ecology) Metabolic pathway Fermentation Dilution Biology Food science Metabolism Materials science Enzyme Gene Ecology

Metrics

146
Cited By
5.58
FWCI (Field Weighted Citation Impact)
28
Refs
0.96
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Microbial Metabolic Engineering and Bioproduction
Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Molecular Biology
Biofuel production and bioconversion
Physical Sciences →  Engineering →  Biomedical Engineering
Gene Regulatory Network Analysis
Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Molecular Biology

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