Abstract Background Efficient biomass bioconversion is a promising solution to alternative energy resources and environmental issues associated with lignocellulosic wastes. The Trichoderma species of cellulolytic fungi have strong cellulose-degrading capability, and their cellulase systems have been extensively studied. Currently, a major limitation of Trichoderma strains is their low production of β-glucosidases. Results We isolated two Trichoderma hamatum strains YYH13 and YYH16 with drastically different cellulose degrading efficiencies. YYH13 has higher cellobiose-hydrolyzing efficiency. To understand mechanisms underlying such differences, we sequenced the genomes of YYH13 and YYH16, which are essentially identical (38.93 and 38.92 Mb,...
The cellulosome of Ruminiclostridium thermocellum was one of the most efficient cellulase systems in...
Abstract Background Cellulase plays a key role in converting cellulosic biomass into fermentable sug...
In this study, gene technology has been used to investigate the cellulolytic enzymes of the filament...
BACKGROUND: Yarrowia lipolytica, one of the most widely studied "nonconventional" oleaginous yeast s...
A cbh1 cellobiohydrolase gene was cloned and sequenced from the fungus Trichoderma harzianum FP108. ...
Recent demands for the production of lignocellulose biofuels boosted research on cellulase. Hydrolys...
The cellulosome of Ruminiclostridium thermocellum was one of the most efficient cellulase systems in...
Cellulose degradation requires sequential or simultaneous synergic action of three types of hydrolyt...
Cellulose degradation requires sequential or simultaneous synergic action of three types of hydrolyt...
[Background] Genomic and proteomic analysis are potent tools for metabolic characte...
Abstract\ud \ud Background\ud The filamentous fungus T...
Abstract Background The ascomycete fungus Trichoderma reesei is the predominant source of enzymes fo...
Abstract Background The filamentous fungus Trichoderm...
Abstract Background The filamentous fungus Trichoderm...
Abstract Background The filamentous fungus Trichoderm...
The cellulosome of Ruminiclostridium thermocellum was one of the most efficient cellulase systems in...
Abstract Background Cellulase plays a key role in converting cellulosic biomass into fermentable sug...
In this study, gene technology has been used to investigate the cellulolytic enzymes of the filament...
BACKGROUND: Yarrowia lipolytica, one of the most widely studied "nonconventional" oleaginous yeast s...
A cbh1 cellobiohydrolase gene was cloned and sequenced from the fungus Trichoderma harzianum FP108. ...
Recent demands for the production of lignocellulose biofuels boosted research on cellulase. Hydrolys...
The cellulosome of Ruminiclostridium thermocellum was one of the most efficient cellulase systems in...
Cellulose degradation requires sequential or simultaneous synergic action of three types of hydrolyt...
Cellulose degradation requires sequential or simultaneous synergic action of three types of hydrolyt...
[Background] Genomic and proteomic analysis are potent tools for metabolic characte...
Abstract\ud \ud Background\ud The filamentous fungus T...
Abstract Background The ascomycete fungus Trichoderma reesei is the predominant source of enzymes fo...
Abstract Background The filamentous fungus Trichoderm...
Abstract Background The filamentous fungus Trichoderm...
Abstract Background The filamentous fungus Trichoderm...
The cellulosome of Ruminiclostridium thermocellum was one of the most efficient cellulase systems in...
Abstract Background Cellulase plays a key role in converting cellulosic biomass into fermentable sug...
In this study, gene technology has been used to investigate the cellulolytic enzymes of the filament...