Additional file 1: Table S1. List of predicted Auxiliary Activity enzymes from CAZy families AA2 and AA3 encoded in the genome of Polyporus brumalis BRFM 1820. Expert annotations for AA3 sub-families, versatile peroxidases (VP), manganese peroxidases (MnP) and generic peroxidases (GP) are indicated. The Cellobiose Dehydrogenase with the modular structure AA8-AA3_1, ProtID #1364243, is not indicated
[Background] Plant biomass conversion for green chemistry and bio-energy is a current challenge for ...
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...
Additional file 6: Table S3. CAZyme coding genes present in nodes with mean log2 read counts < 12 in...
Additional file 8: Figure S3. Phylogeny of the AA3 predicted proteins from Polyporus brumalis and bi...
Additional file 7: Table S4. List of the core set of genes differentially highly transcribed at Day ...
Additional file 3: Table S2. The number of highly transcribed genes in the selected nodes (> mean 12...
Additional file 4: Dataset S2. Mean transcript read counts and numbers of proteins detected in the s...
Additional file 9: Dataset S1. Uni-copy genes selected for the construction of the phylogenetic spec...
Additional file 1: Table S1. Protein concentration (determined by BCA assay) of the secretomes of fi...
Additional file 5: Figure S2. KOG classification of the genes differentially highly transcribed afte...
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 ...
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...
Additional file 6: Table S3. CAZyme coding genes present in nodes with mean log2 read counts < 12 in...
Additional file 8: Figure S3. Phylogeny of the AA3 predicted proteins from Polyporus brumalis and bi...
Additional file 7: Table S4. List of the core set of genes differentially highly transcribed at Day ...
Additional file 3: Table S2. The number of highly transcribed genes in the selected nodes (> mean 12...
Additional file 4: Dataset S2. Mean transcript read counts and numbers of proteins detected in the s...
Additional file 9: Dataset S1. Uni-copy genes selected for the construction of the phylogenetic spec...
Additional file 1: Table S1. Protein concentration (determined by BCA assay) of the secretomes of fi...
Additional file 5: Figure S2. KOG classification of the genes differentially highly transcribed afte...
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 ...
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...