Abstract Background Filamentous fungi are potent biomass degraders due to their ability to thrive in ligno(hemi)cellulose-rich environments. During the last decade, fungal genome sequencing initiatives have yielded abundant information on the genes that are putatively involved in lignocellulose degradation. At present, additional experimental studies are essential to provide insights into the fungal secreted enzymatic pools involved in lignocellulose degradation. Results In this study, we performed a wide analysis of 20 filamentous fungi for which genomic data are available to investigate their biomass-hydrolysis potential. A comparison of fungal genomes and secretomes using enzyme activity profiling revealed discrepancies in carbohydrate a...
<p>We have conducted a genome-level comparative study of basidiomycetes wood-rotting fungi (white, b...
International audienceFilamentous fungi are keystone microorganisms in the regulation of many proces...
Background: Enzymatic breakdown of lignocellulosic biomass is a known bottleneck for the production ...
Background: Filamentous fungi are potent biomass degraders due to their ability to thrive in ligno(h...
Background: Genome and transcriptome sequencing has greatly facilitated the understanding of biomass...
Filamentous fungi possess a high unexplored potential for production of lignocellulose degrading enz...
Background: The enzymatic degradation of lignocellulosic materials by fungal enzyme systems has been...
Abstract Background Lignocellulose biomass is known as a recalcitrant material towards enzymatic hyd...
Plant biomass is one of the most abundant renewable carbon sources, which holds great potential for ...
Background: Biomass-degrading enzymes with improved activity and stability can increase substrate sa...
BackgroundLignocellulose biomass is known as a recalcitrant material towards enzymatic hydrolysis, i...
Fungal cellulolytic enzymes are carbohydrate active enzymes (CAzymes) essential for the deconstructi...
Abstract Background Lignocellulosic biomass is considered as a promising alternative to fossil resou...
Many Penicillium species could produce extracellular enzyme systems with good lignocellulose hydroly...
<div><p>Many <em>Penicillium</em> species could produce extracellular enzyme systems with good ligno...
<p>We have conducted a genome-level comparative study of basidiomycetes wood-rotting fungi (white, b...
International audienceFilamentous fungi are keystone microorganisms in the regulation of many proces...
Background: Enzymatic breakdown of lignocellulosic biomass is a known bottleneck for the production ...
Background: Filamentous fungi are potent biomass degraders due to their ability to thrive in ligno(h...
Background: Genome and transcriptome sequencing has greatly facilitated the understanding of biomass...
Filamentous fungi possess a high unexplored potential for production of lignocellulose degrading enz...
Background: The enzymatic degradation of lignocellulosic materials by fungal enzyme systems has been...
Abstract Background Lignocellulose biomass is known as a recalcitrant material towards enzymatic hyd...
Plant biomass is one of the most abundant renewable carbon sources, which holds great potential for ...
Background: Biomass-degrading enzymes with improved activity and stability can increase substrate sa...
BackgroundLignocellulose biomass is known as a recalcitrant material towards enzymatic hydrolysis, i...
Fungal cellulolytic enzymes are carbohydrate active enzymes (CAzymes) essential for the deconstructi...
Abstract Background Lignocellulosic biomass is considered as a promising alternative to fossil resou...
Many Penicillium species could produce extracellular enzyme systems with good lignocellulose hydroly...
<div><p>Many <em>Penicillium</em> species could produce extracellular enzyme systems with good ligno...
<p>We have conducted a genome-level comparative study of basidiomycetes wood-rotting fungi (white, b...
International audienceFilamentous fungi are keystone microorganisms in the regulation of many proces...
Background: Enzymatic breakdown of lignocellulosic biomass is a known bottleneck for the production ...