Comparative Genomics and Transcriptomics Analyses Reveal Divergent Plant Biomass-Degrading Strategies in Fungi
Results
Genomic and exoproteomic diversity in plant biomass degradation approaches among Aspergilli
Integrative visual omics of the white-rot fungus Polyporus brumalis exposes the biotechnological potential of its oxidative enzymes for delignifying raw plant biomass
Metabolic engineering for valorization of macroalgae biomass
JGI Earth Month: Healthy Streams, Nutritious Microbes?
Overexpression of a Prefoldin β subunit gene reduces biomass recalcitrance in the bioenergy crop Populus
Genome sequencing and analysis of the biomass-degrading fungus Trichoderma reesei (syn. Hypocrea jecorina)
Overexpression of REDUCED WALL ACETYLATION C increases xylan acetylation and biomass recalcitrance in Populus.
An Insect Herbivore Microbiome with High Plant Biomass-Degrading Capacity
Tracking of enzymatic biomass deconstruction by fungal secretomes highlights markers of lignocellulose recalcitrance
AraR plays a more dominant role than XlnR in plant biomass conversion in Penicillium subrubescens
Biomass‐degrading enzymes are catabolite repressed in anaerobic gut fungi