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Effects of Some Metals on Laccase, MnP Enzym Activities and Dye Decolorization of Pleurotus species

Year 2012, Volume: 12 Issue: 1, 33 - 41, 01.04.2012

Abstract

References

  • Acemioğlu, B., 2004. Removal of Fe(II) ions from aqueous solution by Calabrian pine bark wastes, Bioresource Technology, 93, 99 - 102.
  • Aksu, Z. and Tezer, S. 2000. Equilibrium and kinetic modeling of biosorption of Remazol Black B by Rhizopus arrhizus in a batch system effect of temperature, Process Biochemistry, 36, 431-439.
  • Axtell, C.M., Holman, D.J., Unsworth, K.L., Wall, T.D., Waterson, P.E. and Harrington, E., 2000. Shopfloor innovation: implementation of ideas, Journal of Occupational & Organizational Psychology, 73, 265-85. and
  • Baldrian, P. and Gabriel, J., 1997. Effect of heavy metals on basidiomycetes, Folia Microbiologica. 42, 521–523.
  • Baldrian, P. Fungal laccases occurrence and properties. FEMS Microbiology Reviews 30(2), 215-242. doi: 10.1111/j.1574-4976.2005.00010.x
  • Boussaid, A., 1995. Pulp-mill effluent color removal using Sagenomella striatispora, Ph.D.Thesis, Oregon State University, USA.
  • Brahimi-Horn, M.C., Lim, Liany, S.L., Mou, D.G., 1992. Binding of textile azo dyes by Mirothecium verrucaria Orange II, 10B (blue) and. RS (red) azo dye uptake for textile wastewater decolorization, Journal of Indian Microbiology, 10, 245-261.
  • C. Novotny, K. Svobodova, A. Kasinath and P. Erbanova,2004. Biodegradation of synthetic dyes by Irpex lacteus under various growth conditions, International Biodeteriation and Biodegradation., 54, 215–223.
  • Fernandez-Sánchez J.M., Rodríguez-Vázquez R., Ruiz- Aguilar G. and Álvarez P.J.J. 2001. PCB biodegrada- tion in aged contaminated soil: interactions between exogenous Phanerochaete chrysosporium and indig- enous microorganisms. Journal of Environmental Science and Health, 36, 1145-1162.
  • Gallagher, K.A., Healy, M.G., Allen, S.J., 1997. Biosorption of synthetic dye and metal ions from aqueous effluents using fungal biomass. In: Wise, D.L.(Ed.), Elsevier, UK, 27-50.
  • Global Environmental Biotechnology. Elsevier, UK, pp. 27-50
  • Hadıbarata, T. 2009, Oxidative degradation of benzo[a]pyrene Interdisciplinary Studies on Environmental Chemistry, Environmental Research in Asia, Eds., Y. Obayashi, T. Isobe, A. Subramanian, S. Suzuki and S. Tanabe, 309– 316. the ligninolytic fungi,
  • Hammel, K.E. and Cullen, D., 2008. Role of fungal peroxidases in biological ligninolysis. Current Opinion in Plant Biology, 11(3), 349-355.
  • Hatvani and Imre Mecs., 2003. Effects of certain heavy metals on the growth, dye decolorization, and enzyme activity of Lentinula edodes, Ecotoxicology and Environmental Safety, 55, 199–203.
  • Hatvani, N. and Mecs, I., 2002. Effect of the nutrient composition on dyedecolorisation and extracellular enzyme production by Lentinus edodes on solid medium. Enzyme and Microbial Technology, 30, 381– 386
  • Isikhuehmen O, Anoliefo G and Oghale O. 2003, Bioremediation of crude oil polluted soil by the white rot fungus Pleurotus tuberregium (Fr.) Sing. Environmental Science Pollution Research, 10, 108– 112.
  • Kaushik, P. and Malik, A. 2009. Fungal dye decolourization: Recent advances and future potential, Environment International, 35, 127–141.
  • Knapp, J.S., Newby, P.S., Reece, L.P., 1995. Decolorization basidiomycete Technology, 17, 664-668. by wood-rotting Enzyme and Microbial
  • Ollikka, P., Alhonmaki, K., Leppanen, V. M., Glumoff, T., Raijola, T. and Suominem, I., 1993. Decolorization of azo, triphenyl methane, heterocyclic, and polymeric dyes Phanerochaete Environmental Microbiology, 59 (12), 4010-4016.
  • Palma, C., Moreira, M.T., Mielgo, I., Feijoo, G. and Lema, J.M., 1999. Use of fungal bioreactor as a pretreatment or post treatment step for continuous decolorisation of dyes, Water Science and Technology, 40(8), 131-136.
  • Pasti-Grigsby, M.B., Paszcczynski, A., Goszczynski, S., Crawford, D.L. and Crawford, R.L., 1992. Influence of aromatic substitution patterns on azo dye degradability Phanerochaete Environmental Microbiology, 58(11), 3605-3613.
  • Pointing SB., 2001, Feasibility of bioremediation by white-rot Biotechnology, 57, 20–33. and Microbial
  • Purkayastha, R.P., Mitra, A.K. and Bhattacharyya, B., 1994. Uptake and toxicological effects of some heavy metals on Pleurotus sajor-caju (Fr.) Singer. Ecotoxicology and Environmental Safety, 27, 7–13, doi:10.1006/ eesa.1994.1002.
  • Raghukumar, C., Chandramohan, D., Michel Jr., F.C. and Reddy, C.A., 1996. Degradation of lignin and decolorization of paper mill bleach plant effluent (BPE) by marine fungi. Biotechnology Letters, 18 (1), 105-106.
  • Robinson, T., McMullan, G., Marchant, R. and Nigam, P., 2001. Remediation of dyes in textile effluent: A critical rewiev on current treatment technologies with a proposed alternative, Bioresource Technoloy. 77, 247-255.
  • Sağlam, N. and Cihangir, N., 1995. Ağır metallerin biyolojik süreçlerle biyosorbsiyonu çalışmaları, Hacettepe Üniversitesi Eğitim Fakültesi Dergisi, 11, 157–161.
  • Sani, R.K., Azmi, W. and Banerjee, U.C., 1998. Comparison of static and shake culture in the decolorization of textile dyes and dye effluents by Phanerochaete chrysosporium. Folia Microbiologica 43(1), 85-8.
  • Sheremata, T. W., and J. Hawari. 2000. Mineralization of RDX by the White Rot fungus Phanerochaete chrysosporium to carbon dioxide and nitrous oxide. Environmental Science and Technology, 34, 3384– 3388.
  • Swamy, J., Ramsay, J.A., 1999. Effects of glucose and NH4 concentrations on sequential dye decolorization by Trametes versicolor, Enzyme and Microbial Technology, 25, 278-84.
  • USEPA, 1997. Profile of the textile ındustry, U.S: Environmental Compliance Notebook Sector Project, EPA/310-R- 97- 009. Agency, Office of
  • Wariishi, H., Valli, K. and Gold, M.H., 1992. Manganese(II) oxidation by manganese peroxidase from chrysosporium, Journal of Biological Chemistry, 267, 23688–23695. Phanerochaete
  • Wolfenden, B.S. and Willson, R.L., 1982. Radical-cations as reference chromogens in kinetic studies of one- electron transfer reactions, J. Chem. Soc. Perkin Trans. II, 805–812.
  • Wong, Y. and Yu, J., 1999. Laccase-catalyzed decolorization of synthetic dyes. Water Research, 33(16), 3512-3520.
  • Yeşilada, O. and Özcan, B., 1998. “Decolorization of Orange II with the crude culture filtrate of white rot fungus Coriolus versicolor, Turkish Journal of Biology, 22, 463-76.
  • Yeşilada, E., Ozmen, M. and Yeşilada, O., 1999, Studies on the toxic and genotoxic effect of olive oil mill wastewater. Fresenius Environmental Bulletin 8, 732- 9.
  • Young, L. and Yu, J., 1997. Ligninase-catalyzed decolorization of synthetic dyes. Water Research, 31(5), 1187-1193.
  • Zhang, F., Knapp,. J.S. and Tapley, K.N., 1999. Decolourisation of cotton bleaching effluent with wood rotting fungus. Water Research, 33(4), 919- 928.

Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41)

Year 2012, Volume: 12 Issue: 1, 33 - 41, 01.04.2012

Abstract

Bu çalışmada, Pleurotus ostreatus, Pleurotus sajor-caju ve Pleurotus florida test organizması olarak kullanılarak, farklı metal tuzlarının (HgCl2, Pb(NO3)2, Ni(NO3)2.6H2O, ZnSO4.7H2O, CoCl2.6H2O, Cd(NO3)2.4H2O, CuSO4.5H2O) dekolorizasyon ve dekolorizasyonda rol alan ektraselüler enzimlerin aktivitelerine etkisi araştırılmıştır. Çalışmada Pb ve Ni’in 0,001 mM ≤; Hg, Pb ve Cd’nin 0.005 mM≤ ve Co’ın 0.05 mM≤ konsantrasyonunda P. sajor caju’nun gelişim inhibisyonu istatistiksel olarak anlamlı bulunmuştur. (p≤0.05). P. florida miselyal gelişimi Ni ve Cd hariç denenen tüm metallerde 0.001 mM≤ konsantrasyonları istatistiksel olarak anlamlı iken Ni’in 0.005 mM≤ ve Cd’nin 0.01 mM≤ konsantrasyonlarındaki inhibisyon istatistiksel olarak anlamlı bulunmuştur. P. ostreatus’ da Hg ve Pb 0,01 mM ≤ konsantrasyondan sonra istatistiksel olarak anlamlı inhibisyon saptanmıştır. Diğer metallerde 0,001 mM≤ konsantrasyonlarda gelişimin inhibisyonu istatistiksel olarak anlamlı bulunmuştur. Enzim çalışmaları metallerin Lakkaz aktivitesinde önemli bir değişiklik yapmadığını göstermiştir. P. sajorcaju’da %20 inhibisyonu sağlayan tüm metal konsantrasyonlarında kontrole oranla MnP akivitesinin arttığı saptanmıştır. Pleurotus florida’da MnP aktivitesini Co %42 arttırmış, bunu %32 ile Pb takip etmiştir. Hg ve Ni, Pleurotus ostreatus’un MnP aktivitesini arttırdığı ancak Zn, ve Cd, MnP aktivitesini düşmüştür

References

  • Acemioğlu, B., 2004. Removal of Fe(II) ions from aqueous solution by Calabrian pine bark wastes, Bioresource Technology, 93, 99 - 102.
  • Aksu, Z. and Tezer, S. 2000. Equilibrium and kinetic modeling of biosorption of Remazol Black B by Rhizopus arrhizus in a batch system effect of temperature, Process Biochemistry, 36, 431-439.
  • Axtell, C.M., Holman, D.J., Unsworth, K.L., Wall, T.D., Waterson, P.E. and Harrington, E., 2000. Shopfloor innovation: implementation of ideas, Journal of Occupational & Organizational Psychology, 73, 265-85. and
  • Baldrian, P. and Gabriel, J., 1997. Effect of heavy metals on basidiomycetes, Folia Microbiologica. 42, 521–523.
  • Baldrian, P. Fungal laccases occurrence and properties. FEMS Microbiology Reviews 30(2), 215-242. doi: 10.1111/j.1574-4976.2005.00010.x
  • Boussaid, A., 1995. Pulp-mill effluent color removal using Sagenomella striatispora, Ph.D.Thesis, Oregon State University, USA.
  • Brahimi-Horn, M.C., Lim, Liany, S.L., Mou, D.G., 1992. Binding of textile azo dyes by Mirothecium verrucaria Orange II, 10B (blue) and. RS (red) azo dye uptake for textile wastewater decolorization, Journal of Indian Microbiology, 10, 245-261.
  • C. Novotny, K. Svobodova, A. Kasinath and P. Erbanova,2004. Biodegradation of synthetic dyes by Irpex lacteus under various growth conditions, International Biodeteriation and Biodegradation., 54, 215–223.
  • Fernandez-Sánchez J.M., Rodríguez-Vázquez R., Ruiz- Aguilar G. and Álvarez P.J.J. 2001. PCB biodegrada- tion in aged contaminated soil: interactions between exogenous Phanerochaete chrysosporium and indig- enous microorganisms. Journal of Environmental Science and Health, 36, 1145-1162.
  • Gallagher, K.A., Healy, M.G., Allen, S.J., 1997. Biosorption of synthetic dye and metal ions from aqueous effluents using fungal biomass. In: Wise, D.L.(Ed.), Elsevier, UK, 27-50.
  • Global Environmental Biotechnology. Elsevier, UK, pp. 27-50
  • Hadıbarata, T. 2009, Oxidative degradation of benzo[a]pyrene Interdisciplinary Studies on Environmental Chemistry, Environmental Research in Asia, Eds., Y. Obayashi, T. Isobe, A. Subramanian, S. Suzuki and S. Tanabe, 309– 316. the ligninolytic fungi,
  • Hammel, K.E. and Cullen, D., 2008. Role of fungal peroxidases in biological ligninolysis. Current Opinion in Plant Biology, 11(3), 349-355.
  • Hatvani and Imre Mecs., 2003. Effects of certain heavy metals on the growth, dye decolorization, and enzyme activity of Lentinula edodes, Ecotoxicology and Environmental Safety, 55, 199–203.
  • Hatvani, N. and Mecs, I., 2002. Effect of the nutrient composition on dyedecolorisation and extracellular enzyme production by Lentinus edodes on solid medium. Enzyme and Microbial Technology, 30, 381– 386
  • Isikhuehmen O, Anoliefo G and Oghale O. 2003, Bioremediation of crude oil polluted soil by the white rot fungus Pleurotus tuberregium (Fr.) Sing. Environmental Science Pollution Research, 10, 108– 112.
  • Kaushik, P. and Malik, A. 2009. Fungal dye decolourization: Recent advances and future potential, Environment International, 35, 127–141.
  • Knapp, J.S., Newby, P.S., Reece, L.P., 1995. Decolorization basidiomycete Technology, 17, 664-668. by wood-rotting Enzyme and Microbial
  • Ollikka, P., Alhonmaki, K., Leppanen, V. M., Glumoff, T., Raijola, T. and Suominem, I., 1993. Decolorization of azo, triphenyl methane, heterocyclic, and polymeric dyes Phanerochaete Environmental Microbiology, 59 (12), 4010-4016.
  • Palma, C., Moreira, M.T., Mielgo, I., Feijoo, G. and Lema, J.M., 1999. Use of fungal bioreactor as a pretreatment or post treatment step for continuous decolorisation of dyes, Water Science and Technology, 40(8), 131-136.
  • Pasti-Grigsby, M.B., Paszcczynski, A., Goszczynski, S., Crawford, D.L. and Crawford, R.L., 1992. Influence of aromatic substitution patterns on azo dye degradability Phanerochaete Environmental Microbiology, 58(11), 3605-3613.
  • Pointing SB., 2001, Feasibility of bioremediation by white-rot Biotechnology, 57, 20–33. and Microbial
  • Purkayastha, R.P., Mitra, A.K. and Bhattacharyya, B., 1994. Uptake and toxicological effects of some heavy metals on Pleurotus sajor-caju (Fr.) Singer. Ecotoxicology and Environmental Safety, 27, 7–13, doi:10.1006/ eesa.1994.1002.
  • Raghukumar, C., Chandramohan, D., Michel Jr., F.C. and Reddy, C.A., 1996. Degradation of lignin and decolorization of paper mill bleach plant effluent (BPE) by marine fungi. Biotechnology Letters, 18 (1), 105-106.
  • Robinson, T., McMullan, G., Marchant, R. and Nigam, P., 2001. Remediation of dyes in textile effluent: A critical rewiev on current treatment technologies with a proposed alternative, Bioresource Technoloy. 77, 247-255.
  • Sağlam, N. and Cihangir, N., 1995. Ağır metallerin biyolojik süreçlerle biyosorbsiyonu çalışmaları, Hacettepe Üniversitesi Eğitim Fakültesi Dergisi, 11, 157–161.
  • Sani, R.K., Azmi, W. and Banerjee, U.C., 1998. Comparison of static and shake culture in the decolorization of textile dyes and dye effluents by Phanerochaete chrysosporium. Folia Microbiologica 43(1), 85-8.
  • Sheremata, T. W., and J. Hawari. 2000. Mineralization of RDX by the White Rot fungus Phanerochaete chrysosporium to carbon dioxide and nitrous oxide. Environmental Science and Technology, 34, 3384– 3388.
  • Swamy, J., Ramsay, J.A., 1999. Effects of glucose and NH4 concentrations on sequential dye decolorization by Trametes versicolor, Enzyme and Microbial Technology, 25, 278-84.
  • USEPA, 1997. Profile of the textile ındustry, U.S: Environmental Compliance Notebook Sector Project, EPA/310-R- 97- 009. Agency, Office of
  • Wariishi, H., Valli, K. and Gold, M.H., 1992. Manganese(II) oxidation by manganese peroxidase from chrysosporium, Journal of Biological Chemistry, 267, 23688–23695. Phanerochaete
  • Wolfenden, B.S. and Willson, R.L., 1982. Radical-cations as reference chromogens in kinetic studies of one- electron transfer reactions, J. Chem. Soc. Perkin Trans. II, 805–812.
  • Wong, Y. and Yu, J., 1999. Laccase-catalyzed decolorization of synthetic dyes. Water Research, 33(16), 3512-3520.
  • Yeşilada, O. and Özcan, B., 1998. “Decolorization of Orange II with the crude culture filtrate of white rot fungus Coriolus versicolor, Turkish Journal of Biology, 22, 463-76.
  • Yeşilada, E., Ozmen, M. and Yeşilada, O., 1999, Studies on the toxic and genotoxic effect of olive oil mill wastewater. Fresenius Environmental Bulletin 8, 732- 9.
  • Young, L. and Yu, J., 1997. Ligninase-catalyzed decolorization of synthetic dyes. Water Research, 31(5), 1187-1193.
  • Zhang, F., Knapp,. J.S. and Tapley, K.N., 1999. Decolourisation of cotton bleaching effluent with wood rotting fungus. Water Research, 33(4), 919- 928.
There are 37 citations in total.

Details

Primary Language Turkish
Journal Section Articles
Authors

Serkan Fidan This is me

S. Elif Korcan This is me

İ. Hakkı Ciğerci This is me

S. Feyza Erdoğmuş This is me

Publication Date April 1, 2012
Submission Date August 8, 2015
Published in Issue Year 2012 Volume: 12 Issue: 1

Cite

APA Fidan, S., Korcan, S. E., Ciğerci, İ. H., Erdoğmuş, S. F. (2012). Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41). Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, 12(1), 33-41.
AMA Fidan S, Korcan SE, Ciğerci İH, Erdoğmuş SF. Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41). Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi. April 2012;12(1):33-41.
Chicago Fidan, Serkan, S. Elif Korcan, İ. Hakkı Ciğerci, and S. Feyza Erdoğmuş. “Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu Ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41)”. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi 12, no. 1 (April 2012): 33-41.
EndNote Fidan S, Korcan SE, Ciğerci İH, Erdoğmuş SF (April 1, 2012) Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41). Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi 12 1 33–41.
IEEE S. Fidan, S. E. Korcan, İ. H. Ciğerci, and S. F. Erdoğmuş, “Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41)”, Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, vol. 12, no. 1, pp. 33–41, 2012.
ISNAD Fidan, Serkan et al. “Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu Ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41)”. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi 12/1 (April 2012), 33-41.
JAMA Fidan S, Korcan SE, Ciğerci İH, Erdoğmuş SF. Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41). Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi. 2012;12:33–41.
MLA Fidan, Serkan et al. “Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu Ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41)”. Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi, vol. 12, no. 1, 2012, pp. 33-41.
Vancouver Fidan S, Korcan SE, Ciğerci İH, Erdoğmuş SF. Bazı Metallerin Pleurotus türlerinin Boya Dekolorizasyonu ve Lakkaz, MnP Enzim Aktiviteleri Üzerine Olan Etkisi (011004) (33-41). Afyon Kocatepe Üniversitesi Fen Ve Mühendislik Bilimleri Dergisi. 2012;12(1):33-41.