BackgroundLignocellulose biomass is known as a recalcitrant material towards enzymatic hydrolysis, increasing the process cost in biorefinery. In nature, filamentous fungi naturally degrade lignocellulose, using an arsenal of hydrolytic and oxidative enzymes. Assessment of enzyme hydrolysis efficiency generally relies on the yield of glucose for a given biomass. To better understand the markers governing recalcitrance to enzymatic degradation, there is a need to enlarge the set of parameters followed during deconstruction.ResultsIndustrially-pretreated biomass feedstocks from wheat straw, miscanthus and poplar were sequentially hydrolysed following two steps. First, standard secretome from Trichoderma reesei was used to maximize cellulose h...
Filamentous fungi possess a high unexplored potential for production of lignocellulose degrading enz...
Lignocellulosic biomass is an abundant renewable resource that can be used as a feedstock for produc...
Abstract The recalcitrance of lignocellulosic biomass is a major constraint to its high-value use at...
BackgroundLignocellulose biomass is known as a recalcitrant material towards enzymatic hydrolysis, i...
BackgroundLignocellulose biomass is known as a recalcitrant material towards enzymatic hydrolysis, i...
Background: Biomass recalcitrance to enzymatic hydrolysis has been assigned to several structural an...
Background: Enzymatic breakdown of lignocellulosic biomass is a known bottleneck for the production ...
Additional file 4: Figure S3. Kinetic hydrolysis of R0 samples from wheat straw (square), poplar (ci...
Additional filesBackground: Enzymatic breakdown of lignocellulosic biomass is a known bottleneck for...
Background: Filamentous fungi are potent biomass degraders due to their ability to thrive in ligno(h...
Lignocellulose is the most abundant renewable material on earth and plays an important role in devel...
Abstract Background Filamentous fungi are potent biomass degraders due to their ability to thrive in...
The filamentous fungus Trichoderma reesei is one of the main sources for cellulose degrading enzymes...
Conflict between dwindling reserves of fossil energy and growing consumption presents significant ch...
Lignocellulosic biomass from agricultural crop residues and forest waste represents an abundant rene...
Filamentous fungi possess a high unexplored potential for production of lignocellulose degrading enz...
Lignocellulosic biomass is an abundant renewable resource that can be used as a feedstock for produc...
Abstract The recalcitrance of lignocellulosic biomass is a major constraint to its high-value use at...
BackgroundLignocellulose biomass is known as a recalcitrant material towards enzymatic hydrolysis, i...
BackgroundLignocellulose biomass is known as a recalcitrant material towards enzymatic hydrolysis, i...
Background: Biomass recalcitrance to enzymatic hydrolysis has been assigned to several structural an...
Background: Enzymatic breakdown of lignocellulosic biomass is a known bottleneck for the production ...
Additional file 4: Figure S3. Kinetic hydrolysis of R0 samples from wheat straw (square), poplar (ci...
Additional filesBackground: Enzymatic breakdown of lignocellulosic biomass is a known bottleneck for...
Background: Filamentous fungi are potent biomass degraders due to their ability to thrive in ligno(h...
Lignocellulose is the most abundant renewable material on earth and plays an important role in devel...
Abstract Background Filamentous fungi are potent biomass degraders due to their ability to thrive in...
The filamentous fungus Trichoderma reesei is one of the main sources for cellulose degrading enzymes...
Conflict between dwindling reserves of fossil energy and growing consumption presents significant ch...
Lignocellulosic biomass from agricultural crop residues and forest waste represents an abundant rene...
Filamentous fungi possess a high unexplored potential for production of lignocellulose degrading enz...
Lignocellulosic biomass is an abundant renewable resource that can be used as a feedstock for produc...
Abstract The recalcitrance of lignocellulosic biomass is a major constraint to its high-value use at...