References
- F. Raffi, J.D. Hall, C.E. Cernigila, Mutagenicity of azo dyes used
in foods, drugs and cosmetics before and after reduction by
Clostridium species from the human intestinal tract, Food Chem.
Toxicol., 35 (1997) 897–901.
- G. McMullan, C. Meehan, A. Conneely, N. Kirby, T. Robinson,
P. Nigam, I. Banat, R. Marchant, W. Smyth, Microbial
decolourisation and degradation of textile dyes, Appl.
Microbiol. Biotechnol., 56 (2001) 81–87.
- P.P. Vijaya, P. Padmavathy, S. Sandhya, Decolorization and
biodegradation of reactive [azo dyes by mixed culture, Indian
J. Biotechnol., 2 (2003) 1425.
- J. Easton, The Dye Maker’s View, P. Cooper, Ed., Colour in
Dyehouse Effluent, Society of Dyers and Colourists, Bradford,
UK, 1995, p. 11.
- G. McGuire, Reporting of Objective Color Measurements
Raymond, U.S. Department of Agriculture-Agricultural
Research Service, Subtropical Horticulture Research Station,
Miami, Hortscience, 27 (1992) 1254–1255.
- D.M. Marmion, Handbook of US Colorants. Foods, Drugs,
Cosmetics and Medical Devices, 3rd edn., Wiley, New York,
1991.
- T. Robinson, G. McMullan, R. Marchant, P. Nigam, Remediation
of dyes in textile effluent: a critical review on current treatment
technologies with a proposed alternative, Bioresour. Technol.,
77 (2001) 247–255.
- H. Keharia, H. Patel, D. Madamwar, Decolorization screening
of synthetic dyes by anaerobic methanogenic sludge using a
batch decolorization assay, World J. Microbiol. Biotechnol.,
20 (2004) 365–370.
- C.M. Carliell, S.J. Barclay, C. Shaw, A.D. Wheatley, C.A.
Buckley, The effect of salts used in textile dyeing on microbial
decolourisation of a reactive azo dye, Environ. Technol.,
19 (1998) 1133–1137.
- J. Chang, C. Lin, Decolorization kinetics of a recombinant
Escherichia coli strain harboring azo-dye-decolorizing
determinants from Rhodococcus sp., Biotechnol. Lett., 23
(2001) 631.
- O.J. Hao, H. Kim, P.C. Chiang, Decolorization of wastewater,
Crit. Rev. Environ. Sci. Technol., 30 (2000) 449–505.
- J. Swamy, J.A. Ramsay, The evaluation of white rot fungi in
the decolouration of textile dyes, Enzyme Microb. Technol., 24
(1999) 130–137.
- C.S. Rodríguez, J.L. Toca Herrera, Industrial and
biotechnological applications of laccases: a review, Biotechnol.
Adv., 24 (2006) 500–513.
- Shraddha, R. Shekher, S. Sehgal, M. Kamthania, A. Kumar,
Laccase: Microbial sources, production, purification, and
potential biotechnological applications, Enzyme Res., 2011
(2011) 1–11.
- S. Shanmugama, P. Rajasekarana, J.V. Thanikalb, Synthetic
dye decolourization, textile dye and paper industrial effluent
treatment using white rot fungi Lentines edodes, Desal. Wat.
Treat., 4 (2009) 143–147.
- K. Mohajershojaei, A. Khosravi, N.M. Mahmoodi, Decolorization
of dyes using laccase enzyme from single and binary systems,
Desal. Wat. Treat., 52 (2013) 1895–1902.
- Y.S. Choi, Y. Long, M.J. Kim, J.J. Kim, G.H. Kim, Decolorization
and degradation of synthetic dyes by Irpex lacteus KUC8958,
J. Environ. Sci. Health A, Tox. Hazard. Subst. Environ. Eng.,
48 (2013) 501–508.
- F. Nerud, P. Baldrian, I. Eichlerova, V. Merhautova, J. Gabriel,
L. Homolka, Decolorization of dyes using white-rot fungi and
radical-generating reactions, Biocatal. Biotransform., 22 (2004)
325–330.
- A. Akkaya, E.E. Ozseker, H.A Akdogan, Degradation of dyes by
laccase, Anal. Lett., 49 (2015) 790–798.
- R.G. Saratale, G.D. Saratale, D.C. Kalyani, J.S. Chang, S.P.
Govindwar, Enhanced decolorization and biodegradation
of textile azo dye scarlet R by using developed microbial
consortium-GR, Bioresour. Technol., 100 (2009) 2493.
- P. Verma, D. Madamwar, Decolorization of synthetic dyes by a
newly isolated strain of Serratia marcescens, World J. Microbiol.
Biotechnol., 19 (2003) 615.
- M.A. Kumar, V.V. Kumar, R. Ponnusamy, F.P. Daniel, M.
Seenuvasan, C.D. Anuradha, S. Sivanesan, Concomitant
mineralization and detoxification of acid red 88 by an
indigenous acclimated mixed culture, Environ. Prog. Sustain
Energy, 34 (2015) 1455–1466.
- M.A. Kumar, V.V. Kumar, M.P. Premkumar, P. Baskaralingam,
K.V. Thiruvengadaravi, C.D. Anuradha, S. Sivanesan,
Chemometric formulation of bacterial consortium-AVS for
improved decolorization of resonance-stabilized and heteropolyaromatic
dyes, Bioresour. Technol., 123 (2012) 344–351.
- K.P. Gopinath, S. Murugesan, J. Abraham, K. Muthukumar,
Bacillus sp. mutant for improved biodegradation of Congo red:
Random mutagenesis approach, Bioresour. Technol., 100 (2009)
6295–6300.
- K. Kushwaha, A. Gupta, D. Singh, A. Shrivastav,
Characterization of biofilm forming bacteria (Pseudomonas
aeruginosa) UTI infection, Int. J. Curr. Microbiol. Appl. Sci.,
5 (2016) 245–253.
- S.B. Kamath, R. Vidhyavathi, R. Sarada, G.A. Ravishankar,
Enhancement of carotenoids by mutation and stress induced
carotenogenic genes in Haematococcus pluvialis mutants,
Bioresour. Technol., 99 (2008) 8667–8673.
- M. Chandra, A. Kalra, N.S. Sangwan, S.S. Gaurav, M.P.
Darokar, R.S. Sangwan, Development of mutant of Trichoderma
citrinoviride for enhanced production of cellulases, Bioresour.
Technol., 100 (2008) 1659–1662.
- B. Mukhopadhyay, M. Nag, S. Laskar, S. Lahiri, Accumulation
of radiocesium by Pleurotus citrinopileatus species of edible
mushroom, J. Radioanal. Nucl. Chem., 273 (2007) 415–418.
- K. Rasera, J. Ferla, A.J.P. Dillon, R. Riveiros, M. Zeni,
Immobilization of laccase from Pleurotus sajor-caju in polyamide
membranes, Desalination, 245 (2009) 657–661.
- L. Rehmann, E. Ivanova, J.L. Ferguson, H.Q.N. Gunaratne, K.R.
Seddon, G.M. Stephens, Measuring the effect of ionic liquids on
laccase activity using a simple, parallel method, Green Chem.,
14 (2012) 725.
- V. Karthikeyan, M.A. Kumar, P. Mohanapriya, T. Amudha, D.
Thiruselvi, P. Karthik, S. Sivanesan, Biodegradation of Remazol
Brilliant Blue R using isolated bacterial culture (Staphylococcus sp. K2204), Environ. Technol., (2017) http://dx.doi.org/10.1080/
09593330.2017.1369579.
- M.A. Kumar, S. Poonam, V.V. Kumar, G. Baskar, M. Seenuvasan,
D. Anuradha, S. Sivanesan, Mineralization of aromatic amines
liberated during the degradation of a sulfonated textile colorant
using Klebsiella pneumoniae strain AHM, Process Biochem.,
57 (2017) 181–189.