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degradation and new techniques have to be developed to observe in situ the
behaviour of fungi towards their natural substrate.
REFERENCES
Alves, A. M., Record, E., Lomascolo, A., Scholtmeijer, K., Asther, M., Wessels, J. G.
and W¨ sten, H. A. (2004). Highly efficient production of laccase by the
basidiomycete Pycnoporus cinnabarinus. Applied and Environmental Micro-
biology 70, 6379-6384.
Ander, P. and Eriksson, K. E. (1977). Selective degradation of wood components by
white-rot fungi. Physiologia Plantarum 41, 239-248.
Ander, P. and Eriksson, K. E. (1978). Lignin degradation and utilization by micro-
organisms. In Progress in Industrial Microbiology, (M. J. Bull, ed.),
pp. 1-58. Elsevier, The Netherlands, Amsterdam.
Ander, P. and Marzullo, L. (1997). Sugar oxidoreductases and veratryl alcohol oxidase
as related to lignin degradation. Journal of Biotechnology 53, 115-131.
Ander, P., Mishra, C., Farrell, R. L. and Eriksson, K. E. L. (1990). Redox reactions
in lignin degradation: Interactions between laccase, different peroxidases
and cellobiose: Quinone oxidoreductase. Journal of Biotechnology 13(2-3),
189-198.
Antorini, M., Herpo¨l-Gimbert, I., Choinowski, T., Sigoillot, J.-C., Asther, M.,
Winterhalter, K. and Piontek, K. (2002). Purification, crystallisation and
X-ray diffraction study of fully functional laccases from two ligninolytic
fungi. Proteins 1594, 109-114.
Arantes, V. and Milagres, A. M. F. (2009). The relevance of low molecular weight
compounds in wood biodegradation by fungi. Quimica Nova 30, 1586-1595.
Arantes, V., Milagres, A. M. F., Filley, T. R. and Goodell, B. (2011). Lignocellulosic
polysaccharides and lignin degradation by wood decay fungi: The relevance
of nonenzymatic Fenton-based reactions. Journal of Industrial Microbiology
and Biotechnology 38, 541-555.
Asada, Y., Watanabe, A., Ohtsu, Y. and Kuwahara, M. (1995). Purification and
characterization of an aryl alcohol oxidase from the lignin-degrading basid-
iomycete Phanerochaete chrysosporium. Bioscience, Biotechnology, and
Biochemistry 59, 1339-1341.
Askwith, C., Eide, D., Van Ho, A., Bernard, P. S., Li, L., Davis-Kaplan, S.,
Sipe, D. M. and Kaplan, J. (1994). The FET3 gene of S. cerevisiae encodes
a multicopper oxidase required for ferrous iron uptake. Cell 76, 403-410.
Assavanig, A., Amornkitticharoen, B., Ekpaisal, N., Meevootisom, V. and
Flegel, T. W. (1992). Isolation, characterization and function of laccase
from Trichoderma. Applied Microbiology and Biotechnology 38, 198-202.
Baldrian, P. and Valaskova, V. (2008). Degradation of cellulose by basidiomycetous
fungi. FEMS Microbiology Reviews 32, 501-521.
Banci, L. (1997). Structural properties of peroxidases. Journal of Biotechnology 53,
253-263.
Bao, W. J. and Renganathan, V. (1992). Cellobiose oxidase of Phanerochaete chry-
sosporium enhances crystalline cellulose degradation by cellulases. FEBS
Letters 302, 77-80.
Barr, D. P., Shah, M. M., Grover, T. A. and Aust, S. D. (1992). Production of
hydroxyl radical by lignin peroxidase from Phanerochaete chrysosporium.
Archives of Biochemistry and Biophysics 298, 480-485.
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