Macrae IC, Yamaya Y, Yoshida T (1984) Persistence of hexachlorocyclohexane isomers in soil
suspensions. Soil Biol Biochem 16:285–286
Mendonça Maciel MJ, Castroe Silva A, Telles Ribeiro HC (2010) Industrial and biotechnological
applications of ligninolytic enzymes of the basidiomy-cota: a review. Electron J Biotechnol
13:1–13
Mester T, Tien M (2000) Oxidative mechanism of ligninolytic enzymes involved in the degradation
of environmental pollutants. Int Biodeterior Biodegr 46:51–59
Mougin C, Laugero C, Asther M, Chaplain V (1997) Biotransformation of striazine herbicides and
related degradation products in liquid cultures by the white rot fungus Phanerochaete
chrysosporium. Pesticide Sci 49:169–177
Neve EPA, Ingelman-Sundberg M (2008) Intracellular transport and localization of microsomal
cytochrome P450. Anal Bioanal Chem 392:1075–1084
Ning D, Wang H (2012) Involvement of cytochrome P450 in pentachlorophe-nol transformation in
a white rot fungus Phanerochaete chrysosporium. PLoS One 7:e45887
Ozer A, Sal FA, Ali Belduz O, Kirci H, Canakci S (2019) Use of feruloyl esterase as laccasemediator system in paper bleaching. Appl Biochem Biotechnol 190(2):721–731
Peter B, Araven T, Rajinikanth T (2019) Fungal enzymes for bioremediation of xenobiotic
compounds. In: Recent advancement in white biotechnology through fungi, vol 3. Springer,
Cham, pp 463–489
Placido J, Chanaga X, Ortiz-Monsalve S, Yepes M, Mora A (2016) Degradation and detoxification
of synthetic dyes and textile industry effluents by newly isolated Leptosphaerulina sp.isolated
from Columbia. Bioresour Bioprocess 3:6–19
Pollegioni L, Tonin F, Rosini E (2015) Lignin-degrading enzymes. FEBS J 282:1190–1213
Pozdnyakova NN (2012) Involvement of the ligninolytic system of white-rot and litterdecomposing fungi in the degradation of polycyclic aromatic hydrocarbons. Biotechnol Res
Int 2012:243217
Pozdnyakova N, Dubrovskaya E, Chernyshova M, Makarov O, Golubev S, Balandina S,
Turkovskaya O (2018) The degradation of three-ringed polycyclic aromatic hydrocarbons by
wood-inhabiting fungus Pleurotus ostreatus and soil-inhabiting fungus Agaricus bisporus.
Fungal Biol 122:363–372
Qin X, Zhang J, Zhang X, Yang Y (2014) Induction, purification and characterization of a novel
manganese peroxidase from Irpex lacteus CD2 and its application in the decolorization of
different types of dye. PLoS One 9:e113282
Quintero JC, Moreira MT, Feijoo G, Lema JM (2008) Screening of white rot fungal species for their
capacity to degrade lindane and other isomers of hexachlorocyclohexane HCH. Ciencia e
Investigación Agraria 35(2):159–167
Rabinovich ML, Bolobova AV, Vasil'chenko LG (2004) Fungal decomposition of natural aromatic
structures and xenobiotics: a review. Appl Biochem Microbiol 40:1–17
Rajakumar R, Umamaheswari G (2014) Studies on biodegradation of pesticides by white rot fungi.
Int J Life Sci Edu Res 2:42–48
Reddy NC, Rao JV (2008) Biological response of earthworm, Eisenia foetida (Savigny) to an
organophosphorous pesticide, profenofos. Ecotoxicol Environ Saf 71:574–582
Rengarajan T, Rajendran P, Nandakumar N, Lokeshkumar B, Rajendran P, Nishigaki I (2015)
Exposure to polycyclic aromatic hydrocarbons with special focus on cancer. Asian Pac J Trop
Biomed 5(3):182–189
Rostami I, Juhasz AL (2011) Assessment of persistent organic pollutant (POP) bioavailability and
bioaccessibility for human health exposure assessment: a critical review. Crit Rev Environ Sci
Technol 41(7):623–656
Rubilar O, Tortella G, Cea M, Acevedo F, Bustamante M, Gianfreda L, Diez MC (2011) Bioremediation of a chilean andisol contaminated with pentachlorophenol (PCP) by solid substrate
cultures of white-rot fungi. Biodegradation 22:31–41
Ruiz-Hidalgo K, Chin-Pampillo JS, Masís-Mora M, Carazo RE, Rodríguez-Rodríguez CE (2014)
Degradation of carbofuran by Trametes versicolor in rice husk as a potential lignocellulosic
4 Influence of Xenobiotics on Fungal Ligninolytic Enzymes
115
suspensions. Soil Biol Biochem 16:285–286
Mendonça Maciel MJ, Castroe Silva A, Telles Ribeiro HC (2010) Industrial and biotechnological
applications of ligninolytic enzymes of the basidiomy-cota: a review. Electron J Biotechnol
13:1–13
Mester T, Tien M (2000) Oxidative mechanism of ligninolytic enzymes involved in the degradation
of environmental pollutants. Int Biodeterior Biodegr 46:51–59
Mougin C, Laugero C, Asther M, Chaplain V (1997) Biotransformation of striazine herbicides and
related degradation products in liquid cultures by the white rot fungus Phanerochaete
chrysosporium. Pesticide Sci 49:169–177
Neve EPA, Ingelman-Sundberg M (2008) Intracellular transport and localization of microsomal
cytochrome P450. Anal Bioanal Chem 392:1075–1084
Ning D, Wang H (2012) Involvement of cytochrome P450 in pentachlorophe-nol transformation in
a white rot fungus Phanerochaete chrysosporium. PLoS One 7:e45887
Ozer A, Sal FA, Ali Belduz O, Kirci H, Canakci S (2019) Use of feruloyl esterase as laccasemediator system in paper bleaching. Appl Biochem Biotechnol 190(2):721–731
Peter B, Araven T, Rajinikanth T (2019) Fungal enzymes for bioremediation of xenobiotic
compounds. In: Recent advancement in white biotechnology through fungi, vol 3. Springer,
Cham, pp 463–489
Placido J, Chanaga X, Ortiz-Monsalve S, Yepes M, Mora A (2016) Degradation and detoxification
of synthetic dyes and textile industry effluents by newly isolated Leptosphaerulina sp.isolated
from Columbia. Bioresour Bioprocess 3:6–19
Pollegioni L, Tonin F, Rosini E (2015) Lignin-degrading enzymes. FEBS J 282:1190–1213
Pozdnyakova NN (2012) Involvement of the ligninolytic system of white-rot and litterdecomposing fungi in the degradation of polycyclic aromatic hydrocarbons. Biotechnol Res
Int 2012:243217
Pozdnyakova N, Dubrovskaya E, Chernyshova M, Makarov O, Golubev S, Balandina S,
Turkovskaya O (2018) The degradation of three-ringed polycyclic aromatic hydrocarbons by
wood-inhabiting fungus Pleurotus ostreatus and soil-inhabiting fungus Agaricus bisporus.
Fungal Biol 122:363–372
Qin X, Zhang J, Zhang X, Yang Y (2014) Induction, purification and characterization of a novel
manganese peroxidase from Irpex lacteus CD2 and its application in the decolorization of
different types of dye. PLoS One 9:e113282
Quintero JC, Moreira MT, Feijoo G, Lema JM (2008) Screening of white rot fungal species for their
capacity to degrade lindane and other isomers of hexachlorocyclohexane HCH. Ciencia e
Investigación Agraria 35(2):159–167
Rabinovich ML, Bolobova AV, Vasil'chenko LG (2004) Fungal decomposition of natural aromatic
structures and xenobiotics: a review. Appl Biochem Microbiol 40:1–17
Rajakumar R, Umamaheswari G (2014) Studies on biodegradation of pesticides by white rot fungi.
Int J Life Sci Edu Res 2:42–48
Reddy NC, Rao JV (2008) Biological response of earthworm, Eisenia foetida (Savigny) to an
organophosphorous pesticide, profenofos. Ecotoxicol Environ Saf 71:574–582
Rengarajan T, Rajendran P, Nandakumar N, Lokeshkumar B, Rajendran P, Nishigaki I (2015)
Exposure to polycyclic aromatic hydrocarbons with special focus on cancer. Asian Pac J Trop
Biomed 5(3):182–189
Rostami I, Juhasz AL (2011) Assessment of persistent organic pollutant (POP) bioavailability and
bioaccessibility for human health exposure assessment: a critical review. Crit Rev Environ Sci
Technol 41(7):623–656
Rubilar O, Tortella G, Cea M, Acevedo F, Bustamante M, Gianfreda L, Diez MC (2011) Bioremediation of a chilean andisol contaminated with pentachlorophenol (PCP) by solid substrate
cultures of white-rot fungi. Biodegradation 22:31–41
Ruiz-Hidalgo K, Chin-Pampillo JS, Masís-Mora M, Carazo RE, Rodríguez-Rodríguez CE (2014)
Degradation of carbofuran by Trametes versicolor in rice husk as a potential lignocellulosic
4 Influence of Xenobiotics on Fungal Ligninolytic Enzymes
115
