Lignocellulosic plant biomass is an attractive feedstock for the production of sustainable biofuels, but the commercialization of such products is hampered by the high costs of processing this material into fermentable sugars (saccharification). One approach to lowering these costs is to produce crops with cell walls that are more susceptible to hydrolysis to reduce preprocessing and enzyme inputs. To deepen our understanding of the molecular genetic basis of lignocellulose recalcitrance, we have screened a mutagenized population of the model grass Brachypodium distachyon for improved saccharification with an industrial polysaccharide-degrading enzyme mixture. From an initial screen of 2,400 M2 plants, we selected 12 lines that showed herit...
BackgroundSecond-generation biofuels produced from biomass can help to decrease dependency on fossil...
The recalcitrance of secondary plant cell walls to digestion constrains biomass use for the producti...
The substitution of fossil by renewable energy sources is a major strategy in reducing CO2 emission ...
The dwindling reserves of fossil fuels, coupled with the environmental consequences of burning these...
Plant lignocellulosic biomass, mostly composed of cell walls, is one of the largest, mostly untapped...
Members of the grass family are important as resource for the production of first generation bio-eth...
International audienceDedicated lignocellulosic feedstock from grass crops for biofuel production is...
Abstract Background Brachypodium distachyon constitutes an excellent model species for grasses. It i...
© CAB International 2014. Predictions about future supply of crude oil, increase in greenhouse gases...
Large-scale, sustainable production of lignocellulosic bioenergy from biomass will depend on a varie...
The natural recalcitrance of plant cell walls is a major commercial hurdle for plant biomass to be c...
Brachypodium distachyon (Brachypodium) has been proposed as a model for grasses, but there is limite...
BackgroundSecond-generation biofuels are generally produced from the polysaccharides in the lignocel...
Brachypodium distachyon was proposed as new model plant for grasses because of its small genome and ...
Background: Second-generation biofuels produced from biomass can help to decrease dependency on foss...
BackgroundSecond-generation biofuels produced from biomass can help to decrease dependency on fossil...
The recalcitrance of secondary plant cell walls to digestion constrains biomass use for the producti...
The substitution of fossil by renewable energy sources is a major strategy in reducing CO2 emission ...
The dwindling reserves of fossil fuels, coupled with the environmental consequences of burning these...
Plant lignocellulosic biomass, mostly composed of cell walls, is one of the largest, mostly untapped...
Members of the grass family are important as resource for the production of first generation bio-eth...
International audienceDedicated lignocellulosic feedstock from grass crops for biofuel production is...
Abstract Background Brachypodium distachyon constitutes an excellent model species for grasses. It i...
© CAB International 2014. Predictions about future supply of crude oil, increase in greenhouse gases...
Large-scale, sustainable production of lignocellulosic bioenergy from biomass will depend on a varie...
The natural recalcitrance of plant cell walls is a major commercial hurdle for plant biomass to be c...
Brachypodium distachyon (Brachypodium) has been proposed as a model for grasses, but there is limite...
BackgroundSecond-generation biofuels are generally produced from the polysaccharides in the lignocel...
Brachypodium distachyon was proposed as new model plant for grasses because of its small genome and ...
Background: Second-generation biofuels produced from biomass can help to decrease dependency on foss...
BackgroundSecond-generation biofuels produced from biomass can help to decrease dependency on fossil...
The recalcitrance of secondary plant cell walls to digestion constrains biomass use for the producti...
The substitution of fossil by renewable energy sources is a major strategy in reducing CO2 emission ...