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Life Science Research and Sustainable Development ISBN: 978-98-84663-33-9
Elsayed, M. A., Mohamed, M.H., Ali, M., Elshafei, M.H. and Abdelmageed, M.O. (2012).
Optimization of cultural and nutritional parameters for the production of laccase by Pleurotus
ostreatus ARC280. Brit. Biotechnology Journal. 2: 115-132.
Fatima, F., Chaudhary, I., Rastogi, S. and Pathak, N. (2015). Isolation of a novel laccase producing
fungus from litter in upper soil horizon. International journal of Advancement in Engineering
Technology, Management and Applied Science 2(7): 53-60.
Fonseca, M. I., Farina, J. I., Sanabria, N. I., Villalba, L. L. and Zapta, P. D. (2013). Influence of
culture conditions on laccase production, growth and isoenzymes patterns in native White Rot
Fungi from the Misiones Rainforest (Argentina). BioResources. 8(2): 2855-2866.
Giardina, P., Faraco, V., Pezzella, C., Piscitelli, A., Vanhulle, S., and Sannia, G. (2010). Laccases: a
never ending story. Cell Mol Life Sci. 67: 369-385.
Janusz, G., Rogalski, J., Barwinska, M. and Janusz, S. (2006). Effects of culture conditions on
production of extracellular laccase by Rhioctonia praticola. Polish Jornal of Microbiology. 55(4): 309-
319.
Jhadav, A., Vamsi, K., Khairnar, Y., Boraste, A., Gupta, N., Trivedi, S., Patil, P., Gupta, G., Gupta,
M., Mujapara, A., Joshi, B. and Mishra, D. (2009). Optimization of production and partial
purification of laccase by Phanerochaete chrysosporium using submerged fermentation. International
Journal of Microbiology Research. 1(2): 09-12.
Kaur, S. and Nigam, V. (2014). Production and Application of Laccase enzyme in pulp and paper
industry. International Journal of Research in Applied, Natural and Social Sciences. 2(4): 153-158.
Kenkebashvili, N., Elisashvili, V. and Solomon, P. W. (2012). Effect of carbon, nitrogen sources,
and copper concentration on the ligninolytic enzyme production by Coriolopsis gallica. Journal of
Waste Conversion, Bioproducts and Biotechnology 1(2): 22–27.
Kiiskinen, L. L., Ratto, M. and Kruus, K. (2004). Screening for novel laccase-producing microbes.
Journal of Applied Microbiology. 97: 640–646.
Manimozhi, M. and Kaviyarasan, V. (2012). Screening the effect of nutritional parameters on
biomass and laccase production in submerged medium by litter decomposing basidiomycete
Agaricus heterocystis. International Journal of Pharmacy and Pharmaceutical Sciences. 4(3): 592-599.
Mikiashvili, N., Wasser, S., Nevo, E. and Elisashvili, V. (2006). Effects of carbon and nitrogen
sources on Pleurotus ostreatus ligninolytic enzyme activity. World Journal of Microbiology &
Biotechnology. (22): 999–1002.
More, S., Renuka, P., Pruthvi, K., Swetha, M., Malini, S. and Veena, S. (2011). Isolation,
Purification and Characterization of Fungal Laccase from Pleurotus sp. Enzyme Research.
Nadeem, A., Baig, S. and Sheikh, N. (2014). Mycotechnological production of laccase by Pleurotus
ostreatus p1 and its inhibition study. The Journal of animal & plant sciences 24 (2): 492-502.
Niladevi, K. N. and Prema, P. (2008). Effect of inducers and process parameters on laccase
production by Streptomyces psammoticus and its application in dye decolourization. Bioresource
Technology. 99: 4583–4589.
Periasamy, R., Rajadurai1, M. and Palvannan, T. (2011). Effect of different Agro-wastes on laccase
production by Pleurotus ostreatus IMI 395544. International Journal of Environmental Science and
Ecotechnology. 1(1): 21-26.
Pointing, S., Jones, B. and Vrijmoed, L. (2000). Optimization of laccase production by Pycnoporus
sanguineus in submerged liquid culture. Mycologia. 92(1): 139-144.
Prasher, I. B. and Chauhan, R. (2015). Effect of Carbon and Nitrogen Sources on the Growth,
Reproduction and Ligninolytic Enzymes Activity of Dictyoarthrinium Synnematicum Somrith.
Advances in Zoology and Botany. 3(2): 24-30.
https://jesjalna.org/Zoology-Publications/index.html 137 Department of Zoology, J. E. S. College, Jalna

