Weisburger JH (2002) Comments on the history and importance of aromatic and heterocyclic
amines in public health. Mutat Res 506:9–20
Willett KL, Ulrich EM, Hites RA (1998) Differential toxicity and environmental fates of
hexachlorocyclohexane isomers. Environ Sci Technol 32:2197–2207
Xiao P, Kondo R (2020a) Biodegradation and biotransformation of pentachlorophenol by wooddecaying white rot fungus Phlebia acanthocystis TMIC34875. J Wood Sci 66:2
Xiao P, Kondo R (2020b) Potency of Phlebia species of white rot fungi for the aerobic degradation,
transformation and mineralization of lindane. J MicrobiolJ Microbiol 58:395–404
Xu F (1996) Oxidation of phenols, anilines, and benzenethiols by fungal laccases: correlation
between activity and redox potentials as well as halide inhibition. Biochemistry 35:7608–7614
Zahmatkesh M, Tabandeh F, Ebrahimi S (2010) Biodegradation of reactive orange 16 by
Phanerochaete chrysosporium fungus; application in a fluidized bed bioreactor. J Environ
Health Sci Eng 7:385–390
Zahmatkesh M, Spanjers H, Toran MJ, Blánquez P, Van Lier JB (2016) Bioremoval of humic acid
from water by white rot fungi: exploring the removal mechanisms. AMB Express 6:118
Zhang S, Ning Y, Zhang X, Zhao Y, Yang X, Wu K, Yang S, La G, Sun X, Li X (2015) Contrasting
characteristics of anthracene and pyrene degradation by wood rot fungus Pycnoporus
sanguineus H1. Int Biodeterior Biodegrad 105:228–232
Zhang H, Zhang S, He F, Qin X, Zhang X, Yang Y (2016) Characterization of a manganese
peroxidase from white-rot fungus Trametes sp.48424 with strong ability of degrading different
types of dyes and polycyclic aromatic hydrocarbons. J Hazard Mater 320:265–277
Zuleta-Correa A, Merino-Restropo A, Jimanez-Correa S, Hormazo-Anaguano A, Cardona-Gallo
SA (2016) Use of white rot fungi in the degradation of an azo dye from the textile industry.
DYNA 83:128–135
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amines in public health. Mutat Res 506:9–20
Willett KL, Ulrich EM, Hites RA (1998) Differential toxicity and environmental fates of
hexachlorocyclohexane isomers. Environ Sci Technol 32:2197–2207
Xiao P, Kondo R (2020a) Biodegradation and biotransformation of pentachlorophenol by wooddecaying white rot fungus Phlebia acanthocystis TMIC34875. J Wood Sci 66:2
Xiao P, Kondo R (2020b) Potency of Phlebia species of white rot fungi for the aerobic degradation,
transformation and mineralization of lindane. J MicrobiolJ Microbiol 58:395–404
Xu F (1996) Oxidation of phenols, anilines, and benzenethiols by fungal laccases: correlation
between activity and redox potentials as well as halide inhibition. Biochemistry 35:7608–7614
Zahmatkesh M, Tabandeh F, Ebrahimi S (2010) Biodegradation of reactive orange 16 by
Phanerochaete chrysosporium fungus; application in a fluidized bed bioreactor. J Environ
Health Sci Eng 7:385–390
Zahmatkesh M, Spanjers H, Toran MJ, Blánquez P, Van Lier JB (2016) Bioremoval of humic acid
from water by white rot fungi: exploring the removal mechanisms. AMB Express 6:118
Zhang S, Ning Y, Zhang X, Zhao Y, Yang X, Wu K, Yang S, La G, Sun X, Li X (2015) Contrasting
characteristics of anthracene and pyrene degradation by wood rot fungus Pycnoporus
sanguineus H1. Int Biodeterior Biodegrad 105:228–232
Zhang H, Zhang S, He F, Qin X, Zhang X, Yang Y (2016) Characterization of a manganese
peroxidase from white-rot fungus Trametes sp.48424 with strong ability of degrading different
types of dyes and polycyclic aromatic hydrocarbons. J Hazard Mater 320:265–277
Zuleta-Correa A, Merino-Restropo A, Jimanez-Correa S, Hormazo-Anaguano A, Cardona-Gallo
SA (2016) Use of white rot fungi in the degradation of an azo dye from the textile industry.
DYNA 83:128–135
4 Influence of Xenobiotics on Fungal Ligninolytic Enzymes
117
