Additional file 5: Figure S2. KOG classification of the genes differentially highly transcribed after 4-day growth in SSF on wheat straw as compared to control liquid cultures. The identified genes were clustered into nodes of co-regulated genes with mean Log2 of the normalized read counts > 12 in SSF and < 12 in control liquid cultures. The number of up-regulated genes in each KOG class is indicated for the KOG groups Cellular Processes and Signaling, Information storage and Processing and Metabolism
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...
Additional file 7: Table S4. List of the core set of genes differentially highly transcribed at Day ...
Additional file 6: Table S3. CAZyme coding genes present in nodes with mean log2 read counts < 12 in...
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 2: Figure S1. Distributions of the normalized log2 transformed read count of all bio...
Additional file 9: Dataset S1. Uni-copy genes selected for the construction of the phylogenetic spec...
Additional file 8: Figure S3. Phylogeny of the AA3 predicted proteins from Polyporus brumalis and bi...
Additional file 1: Table S1. List of predicted Auxiliary Activity enzymes from CAZy families AA2 and...
[Background] Plant biomass conversion for green chemistry and bio-energy is a current challenge for ...
3 p. Jérémy Tournayre, Laurent Parry, Anne-Catherine Maurin, Julien Averous, Alain Bruhat, et al.. I...
Additional file 6: Figure S2. Confirmation of complementary strain CPoxMBF1. (a) Schematic illustrat...
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...
Additional file 7: Table S4. List of the core set of genes differentially highly transcribed at Day ...
Additional file 6: Table S3. CAZyme coding genes present in nodes with mean log2 read counts < 12 in...
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 2: Figure S1. Distributions of the normalized log2 transformed read count of all bio...
Additional file 9: Dataset S1. Uni-copy genes selected for the construction of the phylogenetic spec...
Additional file 8: Figure S3. Phylogeny of the AA3 predicted proteins from Polyporus brumalis and bi...
Additional file 1: Table S1. List of predicted Auxiliary Activity enzymes from CAZy families AA2 and...
[Background] Plant biomass conversion for green chemistry and bio-energy is a current challenge for ...
3 p. Jérémy Tournayre, Laurent Parry, Anne-Catherine Maurin, Julien Averous, Alain Bruhat, et al.. I...
Additional file 6: Figure S2. Confirmation of complementary strain CPoxMBF1. (a) Schematic illustrat...
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...