Background: Clostridium thermocellum is a gram-positive thermophile that can directly convert lignocellulosic material into biofuels. The metabolism of C. thermocellum contains many branches and redundancies which limit biofuel production, and typical genetic techniques are time-consuming. Further, the genome sequence of a genetically tractable strain C. thermocellum DSM 1313 has been recently sequenced and annotated. Therefore, developing a comprehensive, predictive, genome-scale metabolic model of DSM 1313 is desired for elucidating its complex phenotypes and facilitating model-guided metabolic engineering. Results: We constructed a genome-scale metabolic model iAT601 for DSM 1313 using the KEGG database as a scaffold and an extensive lit...
Thermophilic microorganisms have garnered the interest of the bioprocess industry due to their high ...
Recent international directives promoting the reduced consumption of fossil fuels have warranted met...
Large-scale production of lignocellulosic biofuel is a potential solution to sustainably meet global...
Background: Clostridium thermocellum is a gram-positive thermophile that can directly convert lignoc...
Background Microorganisms possess diverse metabolic capabilities that can potentially be leveraged f...
Biofules are an important option for humanity to move away from its dependence on fossil fuels. Tran...
BackgroundClostridium thermocellum is a model thermophilic organism for the production of biofuels f...
Abstract Background Clostridium thermocellum is a Gram-positive anaerobe with the ability to hydroly...
Identifying microbes possessing a synergistic combination of plant biomass breakdown and biofuel pro...
Clostridium thermocellum is a thermophilic anaerobe that is capable of producing ethanol directly fr...
Background: Biofuel production from plant cell walls offers the potential for sustainable and econom...
Background Clostridium thermocellum is a model thermophilic organism for the production of biofuels ...
The development of a secure and sustainable energy economy is likely to require the production of fu...
Metabolic modeling was used to examine potential bottlenecks that could be encountered for metabolic...
Biomass recalcitrance—resistance to degradation—currently limits the use of lignocellulose for biofu...
Thermophilic microorganisms have garnered the interest of the bioprocess industry due to their high ...
Recent international directives promoting the reduced consumption of fossil fuels have warranted met...
Large-scale production of lignocellulosic biofuel is a potential solution to sustainably meet global...
Background: Clostridium thermocellum is a gram-positive thermophile that can directly convert lignoc...
Background Microorganisms possess diverse metabolic capabilities that can potentially be leveraged f...
Biofules are an important option for humanity to move away from its dependence on fossil fuels. Tran...
BackgroundClostridium thermocellum is a model thermophilic organism for the production of biofuels f...
Abstract Background Clostridium thermocellum is a Gram-positive anaerobe with the ability to hydroly...
Identifying microbes possessing a synergistic combination of plant biomass breakdown and biofuel pro...
Clostridium thermocellum is a thermophilic anaerobe that is capable of producing ethanol directly fr...
Background: Biofuel production from plant cell walls offers the potential for sustainable and econom...
Background Clostridium thermocellum is a model thermophilic organism for the production of biofuels ...
The development of a secure and sustainable energy economy is likely to require the production of fu...
Metabolic modeling was used to examine potential bottlenecks that could be encountered for metabolic...
Biomass recalcitrance—resistance to degradation—currently limits the use of lignocellulose for biofu...
Thermophilic microorganisms have garnered the interest of the bioprocess industry due to their high ...
Recent international directives promoting the reduced consumption of fossil fuels have warranted met...
Large-scale production of lignocellulosic biofuel is a potential solution to sustainably meet global...