Decolourization azo dyes using culture filtrate of newly isolated Crinipellis sp. DK 3


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Authors

  • swapnil kisanrao kale Research Scholar, Department of Biotechnology, yeshwant College, Nanded

Abstract

In present research paper, we studied the azo dyes decolourizing ability of Crinipellis spp. DK3 isolated from University campus of Dr. Panjabrao Deshmukh Krishi Vidyapeeth, Akola, India. Crude laccase from Crinipellis sp. DK3 produced in submerged culture condition was evaluted for dye decolourization. Phloroglucinol was proved to be the most efficient mediator in decolourization of congo red (96%) and methyl blue (82.89%). Nucleotide sequence of Crinipellis sp. DK3 was submitted to Gene bank under accession number JN900255.

Author Biography

  • swapnil kisanrao kale, Research Scholar, Department of Biotechnology, yeshwant College, Nanded
    Department of Biotechnology, yeshwant College, Nanded

References

Baldrian, P. 2004. Purification and characterization of laccase from the white-rot fungus Daedalea quercina and decolorization of synthetic dyes by the enzyme. Appl. Microbiol Biotechnol 63: 560–563.

Bourbonnais, R., M.G. Paice, I.D. Reid, P. Lanthier, & M. Yaguchi. 1995. Lignin oxidation by laccase isozymes from Trametes versicolor and role of the mediator 2,2-azinobis(3 ethylbenzthiazoline-6-sulfonate) in kraft lignin depolymerization. Appl Environ Microbiol 61: 1876–1880.

Chacko Joshni, K. Subramaniam. 2011. Enzymatic Degradation of Azo Dyes – A Review. Int J Environ Sci 1(6):1250-1260

Chhabra, M., S. Mishra, T.R. Sreekrishnan. 2008. Mediator assisted decolorization and detoxification of textile dyes/ dye mixture using Cyathus bulleri laccase. Appl Biochem Biotechnol 151:587–98. doi: 10.1007/s12010-008-8234-z.

Dwivedi, U. N., P. Singh, V. P. Pandey, & A. Kumar. 2011. Structure-function relationship among bacterial, fungal and plant laccases. J Mol Catal B: Enzym 68

:117-128.

Gahlout, M., Shilpa Gupte, Akshaya Gupte. 2013. Optimization of culture condition for enhanced decolorization and degradation of azo dye reactive violet 1 with concomitant production of ligninolytic enzymes by Ganoderma cupreum AG-1. 3 Biotech 3:143–152 DOI 10.1007/s13205-012-0079-z

Glenn, J.K. & M.H. Gold. 1993. Decolorization of several polymeric dyes by the lignin-degrading basidiomycete Phanerochaete chrysosporium. Appl Environ Microbiol 6: 1741–1747.

Gomaa, O.M. 2005. Improving Phenol Red Decolourization Using Laccase-Mediator System International journal of agriculture & biology. Int J Agri Biol 7: 1

Hao, J., F. Song, F. Huang, C. Yang, Z. Zhang, Y. Zheng, X. Tian. 2007. Production of laccase by a newly isolated deuteromycete fungus Pestalotiopsis sp. and its decolorization of azo dye. J Ind Microbiol Biotechnol 34: 233–240 DOI 10.1007/s10295-006-0191-3

Hu, M.R., Y.P. Chao, G.Q. Zhang, Z.Q. Xue, S. Qian. 2008. Laccase-mediator system in the decolorization of diVerent types of recalcitrant dyes. J Ind Microbiol Biotechnol DOI 10.1007/s10295-008-0471-1

Kale, S. K., A. G. Deshmukh, M. S. Dudhare and M. P. Moharil. 2013. Efficiency of native wood rotting fungi degrading wood. J Pl Dis Sci 8 (2):187-190

Kapdan, K.I., F. Kargi, G. McMullan & R. Marchant. 2000. Biological decolorization of textile dye stuff by Coriolus versicolor in a packed column reactor. Environ Technol 21: 231–236.

Kaushik, P., A. Malik. 2009. Fungal dye decolourization: recent advances and future potential. Environ Int 35(1):127-41. doi: 10.1016/j.envint.2008.05.010.

Krishnaveni, M., R. Kowsaly. 2011, Characterization and decolorization of dye and textile effluent by laccase from Pleurotus florida- a white-rot fungi. International Journal of Pharma and Bio Sciences 2(1):117-127

Kuhad, R.C., Singh, A. and Eriksson, K.E.L. 1997. Microorganisms and enzymes involved in the degradation of plant fiber cell walls. Advances in Biochemical Engineering & Biotechnology 57: 47–125.

Kumar, V. V., S.D. Kirupha, P. Periyaraman and S. Sivanesan. 2011. Screening and induction of laccase activity in fungal species and its application in dye decolorization. Afr J Microbiol Res 5(11): 1261-1267.

Li, K., F. Xu, K.L. Eriksson. 1999. Comparison of fungal laccases and redox mediators in oxidation of a non-phenolic lignin model compound. Appl Environ Microbiol 65: 2654–60

Mane, U. V., P.N. Gurav, A.M. Deshmukh and S.P. Govindwar. 2008. Degradation of textile dye reactive navy – blue Rx (Reactive blue–59) by an isolated Actinomycete Streptomyces krainskii SUK – 5. Malays J Microbiol 4(2):1-5

Riva, S. 2006. Laccases: blue enzymes for green chemistry. Trends Biotechnol 24(5):219-26.

Saratale, R.G., G.D. Saratale, J.S. Chang, S. P. Govindwar. 2010. Decolorization and biodegradation of reactive dyes and dye wastewater by a developed bacterial consortium. Biodegrad 21:999–1015. DOI 10.1007/s10532-010-9360-1

Selvam, K., K. Swaminathan, K.S. Chae. 2003. Decolourization of azo dyes and a dye industry effluent by white rot fungus Thelephora sp. Biores Technol 88: 115-119.

Shanmugam, S., T. Palvannan, S.T. Kumar and A. Michael. 2005. Biological decolourization of textile and paper effluents by Pleurotus florida and Agaricus bisporus (White-rot basidiomycetes). World J Microb Biot 21:1149–1151. DOI 10.1007/s11274-005-0298-0

Syed, M.A., H.K. Sim, A. Khalid and M.Y. Shukor. 2009. A simple method to screen for azo-dye-degrading bacteria. J Environ Biol 30(1):89-92

Tamura K, J. Dudley, M. Nei & S. Kumar. 2007. MEGA4: Molecular Evolutionary Genetics Analysis (MEGA) software version 4.0. Mol Bio Evol 24:1596-1599.

Wang, T.V., L. Lu, G. Li, J. Li, T.F. Xu and M. Zhao. 2011. Decolorization of the azo dye reactive black 5 using laccase mediator system. Afr J Biotechnol 10(75):17186-17191. DOI: 10.5897/AJB11.1780

Watanapokasin, RY, A. Boonyakamol, S. Sukseree, A. Krajarng, T. Sophonnithiprasert, S. Kanso, T. Imai. 2008. Hydrogen production and anaerobic decolorization of wastewater containing Reactive Blue 4 by a bacterial consortium of Salmonella subterranea and Paenibacillus polymyxa. Biodegrad 20:411–418

Yang, Q., X.X. Zhao, C.Y. Liu, Y. Zheng, S.J. Qian. 2009. Decolorization of azo, triphenylmethane and anthraquinone dyes by a newly isolated Trametes sp. SQ01 and its laccase. Process Biochem 44 :1185–1189, doi:10.1016/j.procbio.2009.06.015

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Submitted

2015-08-21

Published

2017-03-20

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Articles

How to Cite

kale, swapnil kisanrao. (2017). Decolourization azo dyes using culture filtrate of newly isolated Crinipellis sp. DK 3. Mushroom Research, 25(2). https://epubs.icar.org.in/index.php/MR/article/view/51176