Clostridium phytofermentans was isolated from forest soil and is distinguished by its capacity to directly ferment plant cell wall polysaccharides into ethanol as the primary product, suggesting that it possesses unusual catabolic pathways. The objective of the present study was to understand the molecular mechanisms of biomass conversion to ethanol in a single organism, Clostridium phytofermentans, by analyzing its complete genome and transcriptome during growth on plant carbohydrates. The saccharolytic versatility of C. phytofermentans is reflected in a diversity of genes encoding ATP-binding cassette sugar transporters and glycoside hydrolases, many of which may have been acquired through horizontal gene transfer. These genes are frequen...
Background: Biofuel production from plant cell walls offers the potential for sustainable and econom...
Mesophilic cellulolytic Clostridium papyrosolvens C7 potentially could be used by industry for ethan...
Extremely thermophilic bacteria from the genus Caldicellulosiruptor can degrade polysaccharide compo...
<div><p><i>Clostridium phytofermentans</i> was isolated from forest soil and is distinguished by its...
International audienceClostridium phytofermentans was isolated from forest soil and is distinguished...
Identifying microbes possessing a synergistic combination of plant biomass breakdown and biofuel pro...
Modern methods to develop microbe-based biomass conversion processes require a system-level understa...
Background: Clostridium phytofermentans, an anaerobic soil bacterium, can directly convert plant bio...
<div><h3>Background</h3><p><em>Clostridium phytofermentans</em>, an anaerobic soil bacterium, can di...
The complexity of plant cell walls creates many challenges for microbial decomposition. Clostridium ...
The anaerobic mesophilic bacterium Clostridium phytofermentans grows and ferments multiple plant-bas...
Tomazetto G, Hahnke S, Koeck DE, et al. Complete genome analysis of Clostridium bornimense strain M2...
Modern methods to develop microbe-based biomass conversion processes require a system-level understa...
Clostridium cellulovorans is among the most promising candidates for consolidated bioprocessing (CBP...
<div><p>Microbial metabolism of plant polysaccharides is an important part of environmental carbon c...
Background: Biofuel production from plant cell walls offers the potential for sustainable and econom...
Mesophilic cellulolytic Clostridium papyrosolvens C7 potentially could be used by industry for ethan...
Extremely thermophilic bacteria from the genus Caldicellulosiruptor can degrade polysaccharide compo...
<div><p><i>Clostridium phytofermentans</i> was isolated from forest soil and is distinguished by its...
International audienceClostridium phytofermentans was isolated from forest soil and is distinguished...
Identifying microbes possessing a synergistic combination of plant biomass breakdown and biofuel pro...
Modern methods to develop microbe-based biomass conversion processes require a system-level understa...
Background: Clostridium phytofermentans, an anaerobic soil bacterium, can directly convert plant bio...
<div><h3>Background</h3><p><em>Clostridium phytofermentans</em>, an anaerobic soil bacterium, can di...
The complexity of plant cell walls creates many challenges for microbial decomposition. Clostridium ...
The anaerobic mesophilic bacterium Clostridium phytofermentans grows and ferments multiple plant-bas...
Tomazetto G, Hahnke S, Koeck DE, et al. Complete genome analysis of Clostridium bornimense strain M2...
Modern methods to develop microbe-based biomass conversion processes require a system-level understa...
Clostridium cellulovorans is among the most promising candidates for consolidated bioprocessing (CBP...
<div><p>Microbial metabolism of plant polysaccharides is an important part of environmental carbon c...
Background: Biofuel production from plant cell walls offers the potential for sustainable and econom...
Mesophilic cellulolytic Clostridium papyrosolvens C7 potentially could be used by industry for ethan...
Extremely thermophilic bacteria from the genus Caldicellulosiruptor can degrade polysaccharide compo...