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2:50
Castillo MP, Von Wiron-Lehr S, Scheunert I, Torstensson L (2001) Degradation of isoproturon by
the white rot fungus Phanerochaete chrysosporium. Biol Fertil Soils 33:521–528
Castro L, Crawford L, Mutengwa A, Gotze JP, Michael B (2016) Insights into structure and redox
potential of lignin peroxidase from QM/MM calculations. Org Biomol Chem 14:2385–2389
Chambers WH (1992) Organophosphorous compounds: an overview. In: Chambers JE, Levi PE
(eds) Oranophosphates, chemistry, fate, and effects. Academic Press, San Diego, pp 3–17
Cheng WN, Sim HK, Ahmad SA, Syed MA, Shukor MY, Yusof MT (2016) Characterization of an
azo-dye-degrading white rot fungus isolated from Malaysia. Mycosphere 7(5):560–569
Chishti Z, Hussain S, Arshad KR, Khalid A, Arshad M (2013) Microbial degradation of chlorpyrifos in liquid media and soil. J Environ Manage 114:372–380
Chowdhary P, More N, Yadav A, Bharagava RN (2019) Ligninolytic enzymes: an introduction and
applications in the food industry. In: Kuddus M (ed) Enzymes in food biotechnology, vol 2019,
1st edn. Academic Press, Cambridge, MA, pp 181–195
Claus H (2014) Microbial degradation of 2, 4, 6-trinitrotoluene in vitro and in natural environments.
In: Singh SN (ed) Biological remediation of explosive residues. Springer, Berlin, pp 15–38
Coelho JS, de Oliveira AL, de Souza CGM, Bracht A, Peralta RM (2010) Effect of the herbicides
bentazon and diuron on the production of ligninolytic enzymes by Ganoderma lucidum. Int
Biodet Biodegrad 64:156–161
Coelho-Moreira JDS, Bracht A, Da Silva de Souza AC, Ferreira Oliveira R, De Sá-Nakanishi AB,
Giatti Marques de Souza C, Peralta RM (2013) Degradation of Diuron by Phanerochaete
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enzyme production of white-rot fungus Anthracophyllum discolor. J Biotechnol 150:279–280
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and coated pellets for reactive orange 165 decolourization. Electron J Biotechnol 15:1–17
Elgueta S, Santos C, Lima SD, Diez MC (2016) Immobilization of the white-rot fungus
Anthracophyllum discolor to degrade the herbicide atrazine. AMB Expr 6:104
Ford C, Walter M, Northcott G, Di H, Cameron K, Trower T (2007) Fungal inoculum properties:
extracellular enzyme expression and pentachlorophenol removal in highly contaminated field
soils. J Environ Qual 36:1749–1759
Fragoeiro S, Magan N (2008) Impact of Trametes versicolor and Phanerochaete chrysosporium on
differential breakdown of pesticide mixtures in soil microcosms at two water potentials and
associated respiration and enzyme activity. Int Biodeterior Biodegr 62:376–383
Fu Y, Liu F, Zhao C, Zhao Y, Liu Y, Zhu G (2015) Distribution of chlorpyrifos in rice paddy
environment and its potential dietary risk. J Environ Sci 35:101–107
Ganash MA, Abdel Ghany TM, Reyad AM (2016) Pleurotus ostreatus as a biodegradator for
organophosphorus insecticide—malathion. J Chem Biol Res 33:400–410
Ghosal D, Shreya G, Tapan KD, Youngho A (2016) Current state of knowledge in microbial
degradation of polycyclic aromatic hydrocarbons (PAHs): a review. Front Microbiol 7:1369
Giacomazzi S, Cochet N (2004) Environmental impact of diuron transformation: a review.
Chemosphere 56(11):1021–1032
Giesy JP, Solomon KR, Mackay D, Giddings JM, Williams WM, Moore DR, Purdy J, Cutler GC
(2014) Ecological risk assessment for chlorpyrifos in terrestrial and aquatic systems in the
United States—overview and conclusions. Rev Environ Contam Toxicol 231:1–12
4 Influence of Xenobiotics on Fungal Ligninolytic Enzymes
113
2:50
Castillo MP, Von Wiron-Lehr S, Scheunert I, Torstensson L (2001) Degradation of isoproturon by
the white rot fungus Phanerochaete chrysosporium. Biol Fertil Soils 33:521–528
Castro L, Crawford L, Mutengwa A, Gotze JP, Michael B (2016) Insights into structure and redox
potential of lignin peroxidase from QM/MM calculations. Org Biomol Chem 14:2385–2389
Chambers WH (1992) Organophosphorous compounds: an overview. In: Chambers JE, Levi PE
(eds) Oranophosphates, chemistry, fate, and effects. Academic Press, San Diego, pp 3–17
Cheng WN, Sim HK, Ahmad SA, Syed MA, Shukor MY, Yusof MT (2016) Characterization of an
azo-dye-degrading white rot fungus isolated from Malaysia. Mycosphere 7(5):560–569
Chishti Z, Hussain S, Arshad KR, Khalid A, Arshad M (2013) Microbial degradation of chlorpyrifos in liquid media and soil. J Environ Manage 114:372–380
Chowdhary P, More N, Yadav A, Bharagava RN (2019) Ligninolytic enzymes: an introduction and
applications in the food industry. In: Kuddus M (ed) Enzymes in food biotechnology, vol 2019,
1st edn. Academic Press, Cambridge, MA, pp 181–195
Claus H (2014) Microbial degradation of 2, 4, 6-trinitrotoluene in vitro and in natural environments.
In: Singh SN (ed) Biological remediation of explosive residues. Springer, Berlin, pp 15–38
Coelho JS, de Oliveira AL, de Souza CGM, Bracht A, Peralta RM (2010) Effect of the herbicides
bentazon and diuron on the production of ligninolytic enzymes by Ganoderma lucidum. Int
Biodet Biodegrad 64:156–161
Coelho-Moreira JDS, Bracht A, Da Silva de Souza AC, Ferreira Oliveira R, De Sá-Nakanishi AB,
Giatti Marques de Souza C, Peralta RM (2013) Degradation of Diuron by Phanerochaete
chrysosporium: role of ligninolytic enzymes and cytochrome P450. Biomed Res Int 9:251354
de Sousa Fragoeiro SI (2005) Use of fungi in bioremediation of pesticides. Applied Mycology
Group Institute of Bioscience and Technology, Cranfield University, Cranfield
Di Toro DM, McGrath JA, Hansen DJ (2000) Technical basis for narcotic chemicals and polycyclic
aromatic hydrocarbon criteria. I Water and tissue. Environ Toxicol Chem 19(8):1951–1970
El-Ghany A, Masmal IA (2016) Fungal biodegradation of organophosphorus insecticides and their
impact on soil microbial population. J Plant Pathol Microbiol 7:5
Elgueta S, Diez MC (2010) Lignocellulosic support selection for colonization and ligninolytic
enzyme production of white-rot fungus Anthracophyllum discolor. J Biotechnol 150:279–280
Elgueta S, Rubilar O, Lima N, Diez MC (2012) Selection of white-rot fungi to formulate complex
and coated pellets for reactive orange 165 decolourization. Electron J Biotechnol 15:1–17
Elgueta S, Santos C, Lima SD, Diez MC (2016) Immobilization of the white-rot fungus
Anthracophyllum discolor to degrade the herbicide atrazine. AMB Expr 6:104
Ford C, Walter M, Northcott G, Di H, Cameron K, Trower T (2007) Fungal inoculum properties:
extracellular enzyme expression and pentachlorophenol removal in highly contaminated field
soils. J Environ Qual 36:1749–1759
Fragoeiro S, Magan N (2008) Impact of Trametes versicolor and Phanerochaete chrysosporium on
differential breakdown of pesticide mixtures in soil microcosms at two water potentials and
associated respiration and enzyme activity. Int Biodeterior Biodegr 62:376–383
Fu Y, Liu F, Zhao C, Zhao Y, Liu Y, Zhu G (2015) Distribution of chlorpyrifos in rice paddy
environment and its potential dietary risk. J Environ Sci 35:101–107
Ganash MA, Abdel Ghany TM, Reyad AM (2016) Pleurotus ostreatus as a biodegradator for
organophosphorus insecticide—malathion. J Chem Biol Res 33:400–410
Ghosal D, Shreya G, Tapan KD, Youngho A (2016) Current state of knowledge in microbial
degradation of polycyclic aromatic hydrocarbons (PAHs): a review. Front Microbiol 7:1369
Giacomazzi S, Cochet N (2004) Environmental impact of diuron transformation: a review.
Chemosphere 56(11):1021–1032
Giesy JP, Solomon KR, Mackay D, Giddings JM, Williams WM, Moore DR, Purdy J, Cutler GC
(2014) Ecological risk assessment for chlorpyrifos in terrestrial and aquatic systems in the
United States—overview and conclusions. Rev Environ Contam Toxicol 231:1–12
4 Influence of Xenobiotics on Fungal Ligninolytic Enzymes
113
