Biology Reference
In-Depth Information
Barrasa, J. M., Gonzalez, A. E. and Martinez, A. T. (1992). Ultrastructural aspects of
fungal delignification of Chilean woods by Ganoderma australe and Phlebia
chrysocrea. Holzforschung 46, 1-8.
Bertrand, T., Jolivalt, C., Briozzo, P., Caminade, E., Joly, N., Madzak, C. and
Mougin, C. (2002).Biochemistry 41, 7325-7333.
Blanchette, R. A. (1995). Degradation of lignocellulose complex in wood. Canadian
Journal of Botany 73, S999-S1010.
Blanchette, R. A. and Shaw, C. G. (1978). Associations among bacteria, yeasts and
basidiomycetes during wood decay. Phytopathology 68, 631-637.
Blanchette, R. A., Obst, J. R., Hedges, J. I. and Weliky, K. (1988). Resistance of
hardwood vessels to degradation by white-rot Basidiomycetes. Canadian
Journal of Botany 66, 1841-1847.
Bourbonnais, R. and Paice, M. G. (1988). Veratryl alcohol oxidases from the lignin-
degrading basidiomycete Pleurotus sajor-caju. Biochem. J. 255, 445-450.
Bourbonnais, R. and Paice, M. G. (1990). Oxidation of non-phenolic substrates. An
expanded role for laccase in lignin biodegradation. FEBS Letters 267, 99-102.
Bourbonnais, R., Paice, M. G., Reid, I. D., Lanthier, P. and Yagushi, M. (1995). Lignin
oxidation by laccase isoenzymes from Trametes versicolor and role of the
mediator 2,20 azinobis (3-ethylbenzthi-azoline-6-sulfonate) in Kraft lignin
depolymerisation. Applied and Environmental Microbiology 61, 1876-1880.
Brocchieri, L. (2001). Phylogenetic inferences from molecular sequences: Review and
critique. Theoretical Population Biology 59, 27-40.
Buswell, J. A. (1991). Fungal degradation of lignin. In Handbook of Applied Mycol-
ogy Soil and Plants, (D. K. Arora, B. Rai, K. G. Mukerji and
G. R. Knudsen, eds.), pp. 425-480. Marcel Dekker Inc., Madison, USA
Vol. 1.
Camarero, S., Sarkar, S., Ruiz-Duenas, F. J., Martinez, M. J. and Martinez, A. T.
(1999). Description of a versatile peroxidase involved in the natural
degradation of lignin that has both manganese peroxidase and lignin
peroxidase substrate interaction sites. Journal of Biological Chemistry 274,
10324-10330.
Camarero, S., Ibarra, D., Martinez, M. J. and Martinez, A. (2005). Lignin-derived
compounds as efficient laccase mediators for decolorization of different
types of recalcitrant dyes. Applied and Environmental Microbiology 71,
1775-1784.
Cantarel, B. L., Coutinho, P. M., Rancurel, C., Bernard, T., Lombard, V. and
Henrissat, B. (2009). The Carbohydrate-Active EnZymes database
(CAZy): An expert resource for glycogenomics. Nucleic Acids Research 37,
D233-D238(Database issue), Epub: October 5, 2008.
Cavener, D. R. (1992). GMC oxidoreductases. A newly defined family of homologous
proteins with diverse catalytic activities. Journal of Molecular Biology 223,
811-814.
Christman, R. F. and Oglesby, R. T. (1971). Microbiological degradation and the
formation of humus. In Lignins: Occurrence, Formation, Structure and
Reactions, (K. V. Sarkanen and C. H. Ludwig, eds.), pp. 769-795. Wiley
Intersciences, New York, USA.
Chung, N. and Aust, S. D. (1995). Inactivation of lignin peroxidase by hydrogen
peroxide during the oxidation of phenols. Archives of Biochemistry and
Biophysics 316, 851-855.
Collette, Y., Gilles, A., Pontarotti, P. and Olive, D. (2003). A co-evolution perspective
of the TNFSF and TNFRSF families in the immune system. Trends in
Immunology 24, 387-394.
Search WWH ::




Custom Search