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Systems Metabolic Engineering of Escherichia coli Improves Coconversion of Lignocellulose-Derived Sugars

Biotechnol J. 2019-08-01; 
Joonhoon Kim, Mary Tremaine, Jeffrey A Grass, Hugh M Purdy, Robert Landick, Patricia J Kiley, Jennifer L Reed
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Gene Synthesis … and PstI, and subcloned into YEp351. The genes gtf, crd, and gsmA were synthesized by Genscript (China), and inserted into pRS305 after digestion with enzymes BamHI and PstI. These recombinant plasmids (Table 1) were … Get A Quote

摘要

Currently, microbial conversion of lignocellulose-derived glucose and xylose to biofuels is hindered by the fact that most microbes (including Escherichia coli [E. coli], Saccharomyces cerevisiae, and Zymomonas mobilis) preferentially consume glucose first and consume xylose slowly after glucose is depleted in lignocellulosic hydrolysates. In this study, E. coli strains are developed that simultaneously utilize glucose and xylose in lignocellulosic biomass hydrolysate using genome-scale models and adaptive laboratory evolution. E. coli strains are designed and constructed that coutilize glucose and xylose and adaptively evolve them to improve glucose and xylose utilization. Whole-genome resequencing of the evol... More

关键词

adaptive laboratory evolution, constraint-based modeling, metabolic engineering, sugar coutilization
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