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Science ; 335(6066): 308-13, 2012 Jan 20.
Article in English | MEDLINE | ID: mdl-22267807

ABSTRACT

Prospecting macroalgae (seaweeds) as feedstocks for bioconversion into biofuels and commodity chemical compounds is limited primarily by the availability of tractable microorganisms that can metabolize alginate polysaccharides. Here, we present the discovery of a 36-kilo-base pair DNA fragment from Vibrio splendidus encoding enzymes for alginate transport and metabolism. The genomic integration of this ensemble, together with an engineered system for extracellular alginate depolymerization, generated a microbial platform that can simultaneously degrade, uptake, and metabolize alginate. When further engineered for ethanol synthesis, this platform enables bioethanol production directly from macroalgae via a consolidated process, achieving a titer of 4.7% volume/volume and a yield of 0.281 weight ethanol/weight dry macroalgae (equivalent to ~80% of the maximum theoretical yield from the sugar composition in macroalgae).


Subject(s)
Alginates/metabolism , Biofuels , Escherichia coli/genetics , Ethanol/metabolism , Metabolic Engineering , Phaeophyceae/metabolism , Seaweed/metabolism , Vibrio/enzymology , Alginates/chemistry , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Biological Transport , Biomass , Carrier Proteins/genetics , Carrier Proteins/metabolism , Escherichia coli/metabolism , Fermentation , Genes, Bacterial , Glucose/metabolism , Glucuronic Acid/chemistry , Glucuronic Acid/metabolism , Hexuronic Acids/chemistry , Hexuronic Acids/metabolism , Lactic Acid/metabolism , Mannitol/metabolism , Metabolic Networks and Pathways , Open Reading Frames , Polysaccharide-Lyases/genetics , Polysaccharide-Lyases/metabolism , Vibrio/genetics
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