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2. Intracellular pathways for lignin catabolism in white-rot fungi

3. Rational design engineering of glycoside hydrolase family 7 cellobiohydrolases informed by natural diversity screening

7. Genome sequence of the button mushroom Agaricus bisporus reveals mechanisms governing adaptation to a humic-rich ecological niche

8. Comparative genomics of Ceriporiopsis subvermispora and Phanerochaete chrysosporium provide insight into selective ligninolysis

17. Genome, Transcriptome, and Secretome Analysis of Wood Decay Fungus Postia placenta Supports Unique Mechanisms of Lignocellulose Conversion

20. Additional file 1 of Phylogenetics-based identification and characterization of a superior 2,3-butanediol dehydrogenase for Zymomonas mobilis expression

21. Additional file 5 of Phylogenetics-based identification and characterization of a superior 2,3-butanediol dehydrogenase for Zymomonas mobilis expression

22. Additional file 3 of Phylogenetics-based identification and characterization of a superior 2,3-butanediol dehydrogenase for Zymomonas mobilis expression

23. Additional file 4 of Phylogenetics-based identification and characterization of a superior 2,3-butanediol dehydrogenase for Zymomonas mobilis expression

28. Synthetic fungal multifunctional cellulases for enhanced biomass conversion

30. Engineering enhanced cellobiohydrolase activity

31. Role of P450 monooxygenase in the degradation of the endocrine-disrupting chemical nonylphenol by the white rot fungus Phanerochaete chrysosporium

34. Erratum: Genome sequence of the button mushroom Agaricus bisporus reveals mechanisms governing adaptation to a humic-rich ecological niche (Proceedings of the National Academy of Sciences of the United States of America (2012) 109 (17501-17506) DOI: 10.1073/pnas.1206847109)

35. Correction for Morin et al., Genome sequence of the button mushroom Agaricus bisporus reveals mechanisms governing adaptation to a humic-rich ecological niche (vol 109, pg 17501, 2012)

36. Correction for Genome sequence of the button mushroom Agaricus bisporus reveals mechanisms governing adaptation to a humic-rich ecological niche (vol 109, pg 17501, 2012)

41. Genome sequence of the button mushroomAgaricus bisporusreveals mechanisms governing adaptation to a humic-rich ecological niche

49. Profiling ChlamydomonasMetabolism under Dark, Anoxic H2-Producing Conditions Using a Combined Proteomic, Transcriptomic, and Metabolomic Approach

50. Physiological Regulation, Xenobiotic Induction, and Heterologous Expression of P450 Monooxygenase Gene pc-3 (CYP63A3), a New Member of the CYP63 Gene Cluster in the White-rot Fungus Phanerochaete chrysosporium.

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