Yıl: 2014 Cilt: 38 Sayı: 1 Sayfa Aralığı: 103 - 110 Metin Dili: İngilizce İndeks Tarihi: 29-07-2022

Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii

Öz:
The effect of various factors on dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii ATCC 200800 to obtain rapid and high decolorization activity against Reactive Black 5 and Reactive Blue 171 dyes was investigated. All conditions used were important for dye decolorizing activity of this crude laccase enzyme. The optimum pH of decolorization was tested at 30 °C and it was around 3.0. This activity was highly reduced at pH 4.5–6.0. On the other hand, the optimum temperature for rapid and high decolorization was 50 °C. Importantly, the decolorization rate of crude laccase at pH 4.5 and pH 6.0 increased with the rise in temperature from 30 °C to 50 °C. Therefore, high decolorization could be obtained at pH 4.5 and even pH 6.0 by selecting the proper temperature for these pH values. Enzyme amount also affected the dye decolorization positively. This crude laccase could also decolorize the mixed dyes (Reactive Black 5 and Reactive Blue 171) and synthetic wastewaters. Native polyacrylamide gel electrophoresis showed the responsibility of the laccase enzyme in decolorization. Rapid and high textile dye decolorization through the selection of appropriate conditions could facilitate the development of more economical and environmentally friendly processes.
Anahtar Kelime:

Konular: Biyoloji
Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Abadulla E, Robra KH, Gübitz GM, Silva LM, Cavaco-Paulo A (2000). Enzymatic decolorization of textile dyeing effluents. Text Res J 70: 409–414.
  • Birhanli E, Yesilada O (2006). Increased production of laccase by pellets of Funalia trogii ATCC 200800 and Trametes versicolor ATCC 200801 in repeated-batch mode. Enzyme Microb Technol 39: 1286–1293.
  • Birhanli E, Yesilada O (2010). Enhanced production of laccase in repeated-batch cultures of Funalia trogii and Trametes versicolor. Biochem Eng J 52: 33–37.
  • Birhanlı E, Yeşilada Ö (2013). The utilization of lignocellulosic wastes for laccase production under semisolid-state and submerged fermentation conditions. Turk J Biol 37: 450–456.
  • Bonugli-Santos RC, Durrant LR, Sette LR (2012). The production of ligninolytic enzymes by marine-derived basidiomycetes and their biotechnological potential in the biodegradation of recalcitrant pollutants and the treatment of textile effluents. Water Air Soil Pollut 223: 2333–2345.
  • Camarero S, García O, Vidal T, Colom J, del Río JC, Gutiérrez A, Gras JM, Monje R, Martínez MJ, Martínez ÁT (2004). Efficient bleaching of non-wood high-quality paper pulp using laccase- mediator system. Enzyme Microb Technol 35: 113–120.
  • Camarero S, Ibarra D, Martínez MJ, Martínez ÁT (2005). Lignin- derived compounds as efficient laccase mediators for decolorization of different types of recalcitrant dyes. Appl Environ Microbiol 71: 1775–1784.
  • Claus H, Faber G, König H (2002). Redox-mediated decolorization of synthetic dyes by fungal laccases. Appl Microbiol Biotechnol 59: 672–678.
  • Daâssi D, Frikha F, Zouari-Mechichi H, Belbahri L, Woodward S, Mechichi T (2012). Application of response surface methodology to optimize decolourization of dyes by the laccase-mediator system. J Environ Manage 108: 84–91.
  • Dogan EE, Yesilada E, Ozata L, Yologlu S (2005). Genotoxicity testing of four textile dyes in two crosses of Drosophila using wing somatic mutation and recombination test. Drug Chem Toxicol 28: 289–301.
  • Giardina P, Faraco V, Pezzella C, Piscitelli A, Vanhulle S, Sannia G (2010). Laccases: a never-ending story. Cell Mol Life Sci 67: 369–385.
  • Gül ÜD, Dönmez G (2012). Comparison the dye removal activity of systems contained surfactants and fungus. J Chil Chem Soc 57: 1170–1173.
  • Gül ÜD, Dönmez G (2013). Application of mixed fungal biomass for effective reactive dye removal from textile effluents. Desalin Water Treat 51: 3597–3603.
  • Hadibarata T, Yusoff ARM, Kristanti RA (2012). Acceleration of anthraquinone-type dye removal by white-rot fungus under optimized environmental conditions. Water Air Soil Pollut 223: 4669–4677.
  • Hu TL, Wu SC (2001). Assessment of the effect of azo dye RP2B on the growth of nitrogen fixing cyanobacterium - Anabaena sp. Bioresour Technol 77: 93–95.
  • Janusz G, Rogalski J, Barwińska M, Szczodrak J (2006). Effects of culture conditions on production of extracellular laccase by Rhizoctonia praticola. Pol J Microbiol 55: 309–319.
  • Johannes C, Majcherczyk A (2000). Natural mediators in the oxidation of polycyclic aromatic hydrocarbons by laccase mediator systems. Appl Environ Microbiol 66: 524–528.
  • Joo DJ, Shin WS, Choi JH, Choi SJ, Kim MC, Han MH, Ha TW, Kim YH (2007). Decolorization of reactive dyes using inorganic coagulants and synthetic polymer. Dyes Pigm 73: 59–64.
  • Kokol V, Doliška A, Eichlerová I, Baldrian P, Nerud F (2007). Decolorization of textile dyes by whole cultures of Ischnoderma resinosum and by purified laccase and Mn-peroxidase. Enzyme Microb Technol 40: 1673–1677.
  • Li K, Xu F, Eriksson KE (1999). Comparison of fungal laccases and redox mediators in oxidation of a nonphenolic lignin model compound. Appl Environ Microbiol 65: 2654–2660.
  • Michniewicz A, Ledakowicz S, Ullrich R, Hofrichter M (2008). Kinetics of the enzymatic decolorization of textile dyes by laccase from Cerrena unicolor. Dyes Pigm 77: 295–302.
  • Moilanen U, Osma JF, Winquist E, Leisola M, Rodriguez-Couto S (2010). Decolorization of simulated textile dye baths by crude laccases from Trametes hirsuta and Cerrena unicolor. Eng Life Sci 10: 242–247.
  • Murugesan K, Dhamija A, Nam IH, Kim YM, Chang YS (2007a). Decolourization of reactive black 5 by laccase: optimization by response surface methodology. Dyes Pigm 75: 176–184.
  • Murugesan K, Nam IH, Kim YM, Chang YS (2007b). Decolorization of reactive dyes by a thermostable laccase produced by Ganoderma lucidum in solid state culture. Enzyme Microb Technol 40: 1662–1672.
  • Nilratnisakorn S, Thiravetyan P, Nakbanpote W (2008). Synthetic reactive dye wastewater treatment by narrow-leaved cattail: studied by XRD and FTIR. Asian J Energy Environ 9: 231–252.
  • Nyanhongo GS, Gomes J, Gübitz GM, Zvauya R, Read J, Steiner W (2002). Decolorization of textile dyes by laccases from a newly isolated strain of Trametes modesta. Water Resour 36: 1449– 1456.
  • Parenti A, Muguerza E, Iroz AR, Omarini A, Conde E, Alfaro M, Castanera R, Santoyo F, Ramírez L, Pisabarro AG (2013). Induction of laccase activity in the white rot fungus Pleurotus ostreatus using water polluted with wheat straw extracts. Bioresour Technol 133: 142–149.
  • Robinson T, Chandran B, Nigam P (2002). Removal of dyes from an artificial textile dye effluent by two agricultural waste residues, corncob and barley husk. Environ Int 28: 29–33.
  • Rodriguez-Couto S (2007). Decolouration of industrial azo dyes by crude laccase from Trametes hirsuta. J Hazard Mater 148: 768–770.
  • Roriz MS, Osma JF, Teixeira JA, Rodriguez-Couto S (2009). Application of response surface methodological approach to optimise Reactive Black 5 decolouration by crude laccase from Trametes pubescens. J Hazard Mater 169: 691–696.
  • Soares GMB, Pessoa de Amorim MT, Costa-Ferreira M (2001). Use of laccase together with redox mediators to decolourize Remazol Brilliant Blue R. J Biotechnol 89: 123–129.
  • Tavares APM, Cristóvão RO, Loureiro JM, Boaventura RAR, Macedo EA (2008). Optimisation of reactive textile dyes degradation by laccase–mediator system. J Chem Technol Biotechnol 83: 1609–1615.
  • Wang H, Zheng XW, Su JQ, Tian Y, Xiong XJ, Zheng TL (2009). Biological decolorization of the reactive dyes Reactive Black 5 by a novel isolated bacterial strain Enterobacter sp. EC3. J Hazard Mater 171: 654–659.
  • Yesilada O (1995). Decolourization of crystal violet by fungi. World J Microbiol Biotechnol 11: 601–602.
  • Yeşilada Ö, Özcan B (1998). Decolorization of orange II dye with the crude culture filtrate of white rot fungus, Coriolus versicolor. Turk J Biol 22: 463–476.
  • Yesilada O, Yildirim SC, Birhanli E, Apohan E, Asma D, Kuru F (2010). The evaluation of pre-grown mycelial pellets in decolorization of textile dyes during repeated batch process. World J Microbiol Biotechnol 26: 33–39.
  • Zeng X, Cai Y, Liao X, Zeng X, Li W, Zhang D (2011). Decolorization of synthetic dyes by crude laccase from a newly isolated Trametes trogii strain cultivated on solid agro-industrial residue. J Hazard Mater 187: 517–525.
APA Yesilada O, Birhanli E, ERCAN S, ÖZMEN N (2014). Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. , 103 - 110.
Chicago Yesilada Ozfer,Birhanli Emre,ERCAN Sinem,ÖZMEN NESRİN Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. (2014): 103 - 110.
MLA Yesilada Ozfer,Birhanli Emre,ERCAN Sinem,ÖZMEN NESRİN Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. , 2014, ss.103 - 110.
AMA Yesilada O,Birhanli E,ERCAN S,ÖZMEN N Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. . 2014; 103 - 110.
Vancouver Yesilada O,Birhanli E,ERCAN S,ÖZMEN N Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. . 2014; 103 - 110.
IEEE Yesilada O,Birhanli E,ERCAN S,ÖZMEN N "Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii." , ss.103 - 110, 2014.
ISNAD Yesilada, Ozfer vd. "Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii". (2014), 103-110.
APA Yesilada O, Birhanli E, ERCAN S, ÖZMEN N (2014). Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. Turkish Journal of Biology, 38(1), 103 - 110.
Chicago Yesilada Ozfer,Birhanli Emre,ERCAN Sinem,ÖZMEN NESRİN Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. Turkish Journal of Biology 38, no.1 (2014): 103 - 110.
MLA Yesilada Ozfer,Birhanli Emre,ERCAN Sinem,ÖZMEN NESRİN Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. Turkish Journal of Biology, vol.38, no.1, 2014, ss.103 - 110.
AMA Yesilada O,Birhanli E,ERCAN S,ÖZMEN N Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. Turkish Journal of Biology. 2014; 38(1): 103 - 110.
Vancouver Yesilada O,Birhanli E,ERCAN S,ÖZMEN N Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii. Turkish Journal of Biology. 2014; 38(1): 103 - 110.
IEEE Yesilada O,Birhanli E,ERCAN S,ÖZMEN N "Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii." Turkish Journal of Biology, 38, ss.103 - 110, 2014.
ISNAD Yesilada, Ozfer vd. "Reactive dye decolorization activity of crude laccase enzyme from repeated-batch culture of Funalia trogii". Turkish Journal of Biology 38/1 (2014), 103-110.