Environmental Engineering Reference
In-Depth Information
28. D. S. Arora, R. K. Sharma. Ligninolytic fungal laccases and their biotechno-
logical applications. Appl. Biochem. Biotechnol ., Vol. 160, pp. 1760-1788, 2010.
29. A. Conesa, P. J. Punt, C. A. van den Hondel. Fungal peroxidases: Molecular
aspects and applications. J. Biotechnol ., Vol. 93, pp. 143-158, 2002.
30. R. Vanholme, B. Demedts, K. Morreel, J. Ralph, Boerjan, W. Lignin biosyn-
thesis and structure. Plant Physiol ., Vol. 153, pp. 895-905, 2010.
31. E. Adler. Lignin - Past, present and future. Wood Sci. Technol ., Vol. 11,
pp. 169-218, 1977.
32. M. H. Gold, J. K. Glenn, M. Alic. Use of polymeric dyes in lignin biodegrada-
tion assays. Methods Enzymol ., Vol. 161, pp. 74-78, 1988.
33. L. J. Cookson. Reliability of poly B-411, a polymeric anthraquinone-based
dye, in determining the rot type caused by wood-inhabiting fungi. Appl.
Environ. Microbiol ., Vol. 61, pp. 801-803, 1995.
34. Č. Novotný, B. Rawal, M. Bhatt, M. Patel, V. Šašek, H. P. Molitoris. Capacity
of Irpex lacteus and Pleurotus ostreatus for decolorization of chemically dif-
ferent dyes. J. Biotechnol ., Vol. 89, pp. 113-122, 2001.
35. S. Pointing. Feasibility of bioremediation by white-rot fungi. Appl. Microbiol.
Biotechnol ., Vol. 57, pp. 20-33, 2001.
36. G. Davila-Vazquez, R. Tinoco, M. A. Pickard, R. Vazquez-Duhalt.
Transformation of halogenated pesticides by versatile peroxidase from
Bjerkandera adusta. Enz. Microb. Technol ., Vol. 36, pp. 223-231, 2005.
37. H. Hirai, S. Nakanishi, T. Nishida. Oxidative dechlorination of methoxy-
chlor by ligninolytic enzymes from white-rot fungi. Chemosphere , Vol. 55,
pp. 641-645, 2004.
38. M. D. Cameron, S. Timofeevski, S. D. Aust. Enzymology of Phanerochaete
chrysosporium with respect to the degradation of recalcitrant compounds
and xenobiotics. Appl. Microbiol. Biotechnol ., Vol. 54, pp. 751-758, 2000.
39. Č. Novotný, B. R. M. Vyas, P. Erbanová, A. Kubátová, V. Šašek. Removal
of PCBs by various white rot fungi in liquid cultures. Folia Biol ., Vol. 42,
pp. 136-140, 1997.
40. J. A. Field, E. De Jong, G. F. Costa, J. A. M. De Bont. Biodegradation of
polycyclic aromatic hydrocarbons by new isolates of white rot fungi. Appl.
Environ. Microbiol ., Vol. 58, pp. 2219, 1992.
41. H. Cabana, J. P. Jones, S. N. Agathos. Elimination of endocrine disrupt-
ing chemicals using white rot fungi and their lignin modifying enzymes:
A review. Eng. Life Sci ., Vol. 7, pp. 429-456, 2007.
42. D. Wesenberg, I. Kyriadides, S. N. Agathos. White-rot fungi and their
enzymes for the treatment of industrial dye effluents. Biotechnol. Adv .,
Vol. 22, pp. 161-187, 2003.
43. Y. Fu, T. Viraraghavan. Fungal decolorization of dye wastewaters: A review.
Biores. Technol ., Vol. 79, pp. 251-262, 2001.
44. M. Asgher, H. N. Bhatti, M. Ashraf, R. L. Legge. Recent developments in
biodegradation of industrial pollutants by white rot fungi and their enzyme
system. Biodegradation , Vol. 19, pp. 771-783, 2008.
Search WWH ::




Custom Search