Synthesis of three advanced biofuels from ionic liquid-pretreated switchgrass using engineered Escherichia coli

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One approach to reducing the costs of advanced biofuel production from cellulosic biomass is to engineer a single microorganism to both digest plant biomass and produce hydrocarbons that have the properties of petrochemical fuels. Such an organism would require pathways for hydrocarbon production and the capacity to secrete sufficient enzymes to efficiently hydrolyze cellulose and hemicellulose. To demonstrate how one might engineer and coordinate all of the necessary components for a biomass-degrading, hydrocarbon-producing microorganism, we engineered a microorganism naïve to both processes, Escherichia coli, to grow using both the cellulose and hemicellulose fractions of several types of plant biomass pretreated with ionic liquids.

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External URL: 
http://www.pnas.org/content/108/50/19949.abstract?etoc
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19949-19954
50
108
Publication Date: 
13/12/2011