The genomes of three representative Polyporales (Bjerkandera adusta, Phlebia brevispora and a member of the Ganoderma lucidum complex) recently were sequenced to expand our knowledge on the diversity and distribution of genes involved in degradation of plant polymers in this Basidiomycota order, which includes most wood-rotting fungi. Oxidases, including members of the glucose-methanol-choline (GMC) oxidoreductase superfamily, play a central role in the above degradative process because they generate extracellular H2O2 acting as the ultimate oxidizer in both white-rot and brown-rot decay. The survey was completed by analyzing the GMC genes in the available genomes of seven more species to cover the four Polyporales clades. First, an in sili...
Background: The glucose-methanol-choline (GMC) superfamily is a large and functionally diverse famil...
BackgroundPlant biomass conversion for green chemistry and bio-energy is a current challenge for a m...
BackgroundPlant biomass conversion for green chemistry and bio-energy is a current challenge for a m...
15 p.-4 fig.-1 tab.The genomes of three representative Polyporales (Bjerkandera adusta, Phlebia brev...
Efficient lignin depolymerization is unique to the wood decay basidiomycetes, collectively referred ...
The genomes of three representative Polyporales (Bjerkandera adusta, Phlebia brevispora and a member...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
[Background] Plant biomass conversion for green chemistry and bio-energy is a current challenge for ...
Abstract Background The fungal genus Phlebia consists...
Abstract Background The fungal genus Phlebia consists...
Background: The glucose-methanol-choline (GMC) superfamily is a large and functionally diverse famil...
BackgroundPlant biomass conversion for green chemistry and bio-energy is a current challenge for a m...
BackgroundPlant biomass conversion for green chemistry and bio-energy is a current challenge for a m...
15 p.-4 fig.-1 tab.The genomes of three representative Polyporales (Bjerkandera adusta, Phlebia brev...
Efficient lignin depolymerization is unique to the wood decay basidiomycetes, collectively referred ...
The genomes of three representative Polyporales (Bjerkandera adusta, Phlebia brevispora and a member...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
Background: Plant biomass conversion for green chemistry and bio-energy is a current challenge for a...
[Background] Plant biomass conversion for green chemistry and bio-energy is a current challenge for ...
Abstract Background The fungal genus Phlebia consists...
Abstract Background The fungal genus Phlebia consists...
Background: The glucose-methanol-choline (GMC) superfamily is a large and functionally diverse famil...
BackgroundPlant biomass conversion for green chemistry and bio-energy is a current challenge for a m...
BackgroundPlant biomass conversion for green chemistry and bio-energy is a current challenge for a m...