substrate for biomixtures: from mineralization to toxicity reduction. Process Biochem
49:2266–2271
Schmidt KR, Chand S, Gostomski PA, Boyd-Wilson KS, Ford C, Walter M (2005) Fungal
inoculum properties and its effect on growth and enzyme activity of Trametes versicolor in
soil. Biotechnol Prog 21:377–385
Serbent MP, Guimarães DKS, Drechsler-Santos ER et al (2020) Growth, enzymatic production and
morphology of the white-rot fungi Lentinus crinitus (L.) Fr. Upon 2,4-D herbicide exposition.
Int J Environ Sci Technol 17:2995–3012
Setyo PA, Nawfa R, Martak F, Shimizu K, Kamei I (2017) Biodegradation of Aldrin and Dieldrin
by the white-rot fungus Pleurotus ostreatus. Curr Microbial 74(7):889–889
Shanthi Kumari BS (2014) Influence of chlorpyrifos on secretion of ligninolytic metallo enzymes
by white rot fungus Stereum ostrea. M.Phil dissertation, Sri Krishnadevaraya University,
Ananatapuramu, Andhra Pradesh
Shanthi Kumari BS, Praveen K, Usha KY, Dileep Kumar K, Praveen Kumar Reddy G, Rajasekhar
Reddy B (2019) Ligninolytic behavior of the white-rot fungus Stereum ostrea under influence of
culture conditions, inducers and chlorpyrifos. 3 Biotech 9:424
Sharma B, Dangi AK, Shukla P (2018) Contemporary enzyme based technologies for bioremediation: a review. J Environ Manage 210:10–22
Singh B, Kuhad RC (2000) Degradation of insecticide lindane (g-HCH) by white-rot fungi Cyathus
bulleri and Phanerochaete sordida. Pest Manag Sci 56:142–146
Singh B, Kaur J, Singh K (2012) Biodegradation of malathion by Brevibacillus sp. strain KB2 and
Bacillus cereus strain PU. World J Microbiol Biotechnol 28:1133–1141
Solomon KR, Williams WM, Mackay D, Purdy J, Giddings JM, Giesy JP (2014) Properties and
uses of chlorpyrifos in the United States. Rev Environ Contam Toxicol 231:13–34
Ting W, Yuan S, Wu S, Chang S (2011) Biodegradation of phenanthrene and pyrene by
Ganoderma lucidum. Int Biodeter Biodegr 65:238–242
Tišma M, Zelić B, Vasić-rački Đ (2010) White-rot fungi in phenols, dyes and other xenobiotics
treatment—a brief review. Croat J Food Sci Technol 2(2):34–47
Tomlin CDS (2006) The pesticide manual. A World Compendium. British Crop Protection Council
(BCPC), Alton, Hampshire
Torres DT, Canales MG, Santillan YM, Gomez CR, Sandoval OA (2016) Removal of polycyclic
hydrocarbons by Pleurotus ostreatus sp.ATCC 38540 in liquid medium. Acad J Scientific Res
4:376–379
Torres-Duarte C, Roman R, Tinoco R, Vazquez-Duhalt R (2009) Halogenated pesticide transformation by a laccase–mediator system. Chemosphere 77:687–692
Tortella G, Diez MC, Durán N (2005) Fungal diversity and use in decomposition of environmental
pollutants. Crit Rev Microbiol 31:197–212
Tortella G, Rubilar O, Gianfreda L, Valenzuela E, Diez M (2008) Enzymatic characterization of
Chilean native wood-rotting fungi for potenial use in the bioremediation of polluted environments with chlorophenols. World J Microbiol Biotechnol 24:2805–2818
Tripathi A, Dixit S (2016) Bioremediation of phenolic compounds by higher fungi—a review. Int J
Adv Res 4(7):14–35
Tu CM (1970) Effect of four organophosphorus insecticides on microbial activities in soil. Appl
Microbiol 19:479–484
Usha KY, Praveen K, Reddy BR (2014) Enhanced production of ligninolytic enzymes by a
mushroom Stereum ostrea. Bio Med Res Int 5:9
Valle JS, Van den Berghe LPS, Ollveira ACC, Taveres TFF, Linde GA (2015) Effect of different
compounds on the induction of laccase by Agaricus blazei. Genet Mol Res 14(4):15882–15891
Ventura-Camargo BDC, Marin-Morales MA (2013) Azo dyes: characterization and toxicity—a
review. Ind Sci Technol 2:85–103
Wali A, Gupta M, Gupta S, Sharma V, Salgotra R, Sharma M (2020) Lignin degradation and
nutrient cycling by white rot fungi under the influence of pesticides. 3 Biotech 10:266
116
B. S. Shanthi Kumari et al.
Précédent

- 127/350

Suivant