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6. The F-box protein gene exo-1 is a target for reverse engineering enzyme hypersecretion in filamentous fungi

7. The regulatory and transcriptional landscape associated with carbon utilization in a filamentous fungus

8. Genomewide and Enzymatic Analysis Reveals Efficient d-Galacturonic Acid Metabolism in the Basidiomycete Yeast Rhodosporidium toruloides

9. Broad Substrate-Specific Phosphorylation Events Are Associated With the Initial Stage of Plant Cell Wall Recognition in Neurospora crassa

11. A novel luciferase‐based reporter tool to monitor the dynamics of carbon catabolite repression in filamentous fungi.

12. Engineering Saccharomyces cerevisiae for co-utilization of D-galacturonic acid and D-glucose from citrus peel waste.

13. Network reconstruction and systems analysis of plant cell wall deconstruction by Neurospora crassa

14. The transcription factor PDR-1 is a multi-functional regulator and key component of pectin deconstruction and catabolism in Neurospora crassa

19. Identification and characterization of a galacturonic acid transporter from Neurospora crassa and its application for Saccharomyces cerevisiae fermentation processes.

20. Fungal polysaccharide‐specific responses revealed

21. A comparative systems analysis of polysaccharide-elicited responses in Neurospora crassa reveals carbon source-specific cellular adaptations.

24. Tic20 forms a channel independent of Tic110 in chloroplasts

27. Growing a circular economy with fungal biotechnology: a white paper

30. Enzymatic One-Pot Hydrolysis of Extracted Sugar Beet Press Pulp after Solid-State Fermentation with an Engineered Aspergillus niger Strain.

33. Biofilm formation by Staphylococcus xylosus

34. Additional file 1 of Press water from the mechanical drying of Douglas-fir wood chips has multiple beneficial effects on lignocellulolytic fungi

37. Plant polysaccharide perception and its molecular regulation – with a focus on pectin degradation – in Neurospora crassa

39. Fungal Genomics

40. Degradative Capacity of Two Strains of Rhodonia placenta: From Phenotype to Genotype

41. The Aspergillus fumigatus Phosphoproteome Reveals Roles of High-Osmolarity Glycerol Mitogen-Activated Protein Kinases in Promoting Cell Wall Damage and Caspofungin Tolerance

42. Fungal Genomics

43. Degradative Capacity of Two Strains of Rhodonia placenta: From Phenotype to Genotype

44. Growing a circular economy with fungal biotechnology: a white paper

47. Multifunctionality of Forests: A White Paper on Challenges and Opportunities in China and Germany

48. The Aspergillus fumigatus Phosphoproteome Reveals Roles of High-Osmolarity Glycerol Mitogen-Activated Protein Kinases in Promoting Cell Wall Damage and Caspofungin Tolerance

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