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Degradation and detoxification of synthetic dyes and textile industry effluents by newly isolated Leptosphaerulina sp. from Colombia
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  • 作者:Jersson Plácido ; Xiomara Chanagá ; Santiago Ortiz-Monsalve…
  • 关键词:Leptosphaerulina sp. ; Ligninolytic enzymes ; Dyes ; Decolorization ; Textile effluents ; Colombia
  • 刊名:Bioresources and Bioprocessing
  • 出版年:2016
  • 出版时间:December 2016
  • 年:2016
  • 卷:3
  • 期:1
  • 全文大小:1,910 KB
  • 参考文献:Abadulla E, Tzanov T, Costa S, Robra KH, Cavaco-Paulo A, Gubitz GM (2000) Decolorization and detoxification of textile dyes with a laccase from Trametes hirsuta. Appl Environ Microbiol 66:3357–3362CrossRef
    Anastasi A, Prigione V, Varese GC (2010) Industrial dye degradation and detoxification by basidiomycetes belonging to different eco-physiological groups. J Hazard Mater 177:260–267. doi:10.​1016/​j.​jhazmat.​2009.​12.​027 CrossRef
    Angel TM (2002) Molecular biology and structure-function of lignin-degrading heme peroxidases. Enzyme Microb Technol 30:425–444. doi:10.​1016/​S0141-0229(01)00521-X CrossRef
    Archibald FS, Bourbonnais R, Jurasek L, Paice MG, Reid ID (1997) Kraft pulp bleaching and delignification by Trametes versicolor. J Biotechnol 53:215–236. doi:10.​1016/​S0168-1656(97)01675-1 CrossRef
    Asgher M, Azim N, Bhatti HN (2009) Decolorization of practical textile industry effluents by white rot fungus Coriolus versicolor IBL-04. Biochem Eng J 47:61–65CrossRef
    Axelsson J, Nilsson U, Terrazas E, Aliaga TA, Welander U (2006) Decolorization of the textile dyes Reactive Red 2 and Reactive Blue 4 using Bjerkandera sp. Strain BOL 13 in a continuous rotating biological contactor reactor. Enzyme Microb Technol 39:32–37CrossRef
    Babot ED, Rico A, Rencoret J, Kalum L, Lund H, Romero J, del Río JC, Martínez ÁT, Gutiérrez A (2011) Towards industrially-feasible delignification and pitch removal by treating paper pulp with Myceliophthora thermophila laccase and a phenolic mediator. Bioresour Technol 102:6717–6722. doi:10.​1016/​j.​biortech.​2011.​03.​100 CrossRef
    Baldrian P, Šnajdr J (2006) Production of ligninolytic enzymes by litter-decomposing fungi and their ability to decolorize synthetic dyes. Enzyme Microb Technol 39:1023–1029. doi:10.​1016/​j.​enzmictec.​2006.​02.​011 CrossRef
    Bergsten-Torralba L, Nishikawa M, Baptista D, Magalhães D, Silva Md (2009) Decolorization of different textile dyes by Penicillium simplicissimum and toxicity evaluation after fungal treatment. Brazilian J Microbiol. 40:808–817CrossRef
    Chanagá Vera X, Plácido Escobar J, Marín Montoya M, Pérez Yepes, del Socorro María (2012) Native fungi with industrial dye degrading potential in the Aburrá valley, Colombia. Revista Facultad Nacional de Agronomía, Medellín. 65:6811–6821
    Ciullini I, Tilli S, Scozzafava A, Briganti F (2008) Fungal laccase, cellobiose dehydrogenase, and chemical mediators: combined actions for the decolorization of different classes of textile dyes. Bioresour Technol 99:7003–7010. doi:10.​1016/​j.​biortech.​2008.​01.​019 CrossRef
    Costa SM, Goncalves AR, Esposito E (2005) Ceriporiopsis subvermispota used in delignification of sugarcane bagasse prior to soda/anthraquinone pulping. In: Davison BH, Evans BR, Finkelstein M, McMillan JD (eds) Twenty-sixth symposium on biotechnology for fuels and chemicals. Humana Press, New York, pp 695–706CrossRef
    Couto S, Toca-Herrera J (2006) Lacasses in the textile industry. Biotechnol Mol Biol Rev 1:115–120
    Dias A, Sampaio A, Bezerra R (2007) Environmental applications of fungal and plant systems: decolourisation of textile wastewater and related dyestuffs. In: Singh S, Tripathi R (eds) Environmental Bioremediation Technologies. Springer, Heidelberg, pp 445–463CrossRef
    dos Santos AB, Cervantes FJ, van Lier JB (2007) Review paper on current technologies for decolourisation of textile wastewaters: perspectives for anaerobic biotechnology. Bioresour Technol 98:2369–2385. doi:10.​1016/​j.​biortech.​2006.​11.​013 CrossRef
    Erkurt EA, Ünyayar A, Kumbur H (2007) Decolorization of synthetic dyes by white rot fungi, involving laccase enzyme in the process. Process Biochem 42:1429–1435. doi:10.​1016/​j.​procbio.​2007.​07.​011 CrossRef
    Gallego A, Torres F, Robledo S, Vélez ID, Carrillo L, Muñoz DL, Quiñones W, Fonnegra R, Roldán J, Valencia L (2006) Actividad Leishmanicida y tripanocida de Acacia farnesiana, Piper arieianum, P. subpedale, Sphagnum recurvum y vismia baccifera ssp. ferruginea. Actual Biol. 28:39–49
    Hammel KE, Cullen D (2008) Role of fungal peroxidases in biological ligninolysis. Curr Opin Plant Biol 11:349–355. doi:10.​1016/​j.​pbi.​2008.​02.​003 CrossRef
    Hao J, Song F, Huang F, Yang C, Zhang Z, Zheng Y, Tian X (2007) Production of laccase by a newly isolated deuteromycete fungus Pestalotiopsis sp. and its decolorization of azo dye. J Ind Microbiol Biotechnol 34:233–240CrossRef
    Hernández-Luna C, Gutiérrez-Soto G, Salcedo-Martínez S (2008) Screening for decolorizing basidiomycetes in Mexico. World J Microbiol Biotechnol 24:465–473. doi:10.​1007/​s11274-007-9495-3 CrossRef
    Jarosz-Wilkołazka A, Kochmańska-Rdest J, Malarcz̄yk E, Wardas W, Leonowicz A (2002) Fungi and their ability to decolourize azo and anthraquinonic dyes. Enzyme Microb Technol 30:566–572. doi:10.​1016/​S0141-0229(02)00022-4 CrossRef
    Jin X, Liu G, Xu Z, Tao W (2007) Decolorization of a dye industry effluent by Aspergillus fumigatus XC6. Appl Microbiol Biotechnol 74:239–243CrossRef
    Kariminiaae-Hamedaani H, Sakurai A, Sakakibara M (2007) Decolorization of synthetic dyes by a new manganese peroxidase-producing white rot fungus. Dyes Pigm 72:157–162. doi:10.​1016/​j.​dyepig.​2005.​08.​010 CrossRef
    Khindaria A, Yamazaki I, Aust SD (1996) Stabilization of the veratryl alcohol cation radical by lignin peroxidaseâe. Biochemistry 35:6418–6424. doi:10.​1021/​bi9601666 CrossRef
    Kirby N, Marchant R, McMullan G (2000) Decolourisation of synthetic textile dyes by Phlebia tremellosa. FEMS Microbiol Lett 188:93–96. doi:10.​1016/​S0378-1097(00)00216-0 CrossRef
    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. doi:10.​1016/​j.​enzmictec.​2006.​08.​015 CrossRef
    Mattinen M, Maijala P, Nousiainen P, Smeds A, Kontro J, Sipilä J, Tamminen T, Willför S, Viikari L (2011) Oxidation of lignans and lignin model compounds by laccase in aqueous solvent systems. J Mol Catal B Enzym 72:122–129. doi:10.​1016/​j.​molcatb.​2011.​05.​009 CrossRef
    Máximo C, Costa-Ferreira M (2004) Decolourisation of reactive textile dyes by Irpex lacteus and lignin modifying enzymes. Process Biochem 39:1475–1479. doi:10.​1016/​S0032-9592(03)00293-0 CrossRef
    Máximo C, Amorim MTP, Costa-Ferreira M (2003) Biotransformation of industrial reactive azo dyes by Geotrichum sp. CCMI 1019. Enzyme Microb Technol 32:145–151. doi:10.​1016/​S0141-0229(02)00281-8 CrossRef
    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. doi:10.​1016/​j.​dyepig.​2007.​05.​015 CrossRef
    Mohorčič M, Teodorovič S, Golob V, Friedrich J (2006) Fungal and enzymatic decolourisation of artificial textile dye baths. Chemosphere 63:1709–1717. doi:10.​1016/​j.​chemosphere.​2005.​09.​063 CrossRef
    Murugesan K, Dhamija A, Nam I, Kim Y, Chang Y (2007) Decolourization of Reactive Black 5 by laccase: optimization by response surface methodology. Dyes Pigm 75:176–184CrossRef
    Novotný Č, Svobodová K, Kasinath A, Erbanová P (2004) Biodegradation of synthetic dyes by Irpex lacteus under various growth conditions. Int Biodeterior Biodegrad. 54:215–223. doi:10.​1016/​j.​ibiod.​2004.​06.​003 CrossRef
    Novotný Č, Svobodová K, Benada O, Kofroňová O, Heissenberger A, Fuchs W (2011) Potential of combined fungal and bacterial treatment for color removal in textile wastewater. Bioresour Technol 102:879–888CrossRef
    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 Res 36:1449–1456. doi:10.​1016/​S0043-1354(01)00365-7 CrossRef
    Pakshirajan K, Sivasankar A, Sahoo NK (2011) Decolourization of synthetic wastewater containing azo dyes by immobilized Phanerochaete chrysosporium in a continuously operated RBC reactor. Appl Microbiol Biotechnol 89:1223–1232CrossRef
    Park C, Lee M, Lee B, Kim S, Chase HA, Lee J, Kim S (2007) Biodegradation and biosorption for decolorization of synthetic dyes by Funalia trogii. Biochem Eng J 36:59–65. doi:10.​1016/​j.​bej.​2006.​06.​007 CrossRef
    Risna RA, Suhirman S (2002) Ligninolytic enzyme production by Polyporaceae from Lombok Indonesia. Fungal Divers 9:123–134
    Robinson T, Chandran B, Nigam P (2001) Studies on the production of enzymes by white-rot fungi for the decolourisation of textile dyes. Enzyme Microb Technol 29:575–579. doi:10.​1016/​S0141-0229(01)00430-6 CrossRef
    Sajben-Nagy E, Manczinger L, Škrbić B, Živančev J, Antić I, Krisch J, Vágvölgyi C (2014) Characterization of an extracellular laccase of Leptosphaerulina chartarum. World J Microbiol Biotechnol 30:2449–2458CrossRef
    Salony S, Mishra S, Bisaria V (2006) Production and characterization of laccase from Cyathus bulleri and its use in decolourization of recalcitrant textile dyes. Appl Microbiol Biotechnol 71:646–653. doi:10.​1007/​s00253-005-0206-4 CrossRef
    Sergio R (2006) Laccases: blue enzymes for green chemistry. Trends Biotechnol 24:219–226CrossRef
    Simon LT, Bishop DS, Hooper GR (1979) Ultrastructure and cytochemical localization of laccase in two strains of Leptosphaerulina briosiana (Pollaci) Graham and Luttrell. J Bacteriol 137:537–544
    Svobodová K, Majcherczyk A, Novotný Č, Kües U (2008) Implication of mycelium-associated laccase from Irpex lacteus in the decolorization of synthetic dyes. Bioresour Technol 99:463–471. doi:10.​1016/​j.​biortech.​2007.​01.​019 CrossRef
    Swamy J, Ramsay JA (1999) The evaluation of white rot fungi in the decoloration of textile dyes. Enzyme Microb Technol 24:130–137CrossRef
    Telke AA, Kalyani DC, Dawkar VV, Govindwar SP (2009) Influence of organic and inorganic compounds on oxidoreductive decolorization of sulfonated azo dye CI Reactive Orange 16. J Hazard Mater 172:298–309CrossRef
    Toh Y, Yen JJL, Obbard JP, Ting Y (2003) Decolourisation of azo dyes by white-rot fungi (WRF) isolated in Singapore. Enzyme Microb Technol 33:569–575. doi:10.​1016/​S0141-0229(03)00177-7 CrossRef
    Weisburger JH (2002) Comments on the history and importance of aromatic and heterocyclic amines in public health. Mutat Res 506–507:9–20. doi:10.​1016/​S0027-5107(02)00147-1 CrossRef
    Xin B, Chen G, Zheng W (2010) Bioaccumulation of Cu-complex reactive dye by growing pellets of Penicillium oxalicum and its mechanism. Water Res 44:3565–3572CrossRef
    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 26:33–39CrossRef
    Zouari-Mechichi H, Mechichi T, Dhouib A, Sayadi S, Martínez AT, Martínez MJ (2006) Laccase purification and characterization from Trametes trogii isolated in Tunisia: decolorization of textile dyes by the purified enzyme. Enzyme Microb Technol 39:141–148. doi:10.​1016/​j.​enzmictec.​2005.​11.​027 CrossRef
  • 作者单位:Jersson Plácido (1)
    Xiomara Chanagá (1)
    Santiago Ortiz-Monsalve (1)
    María Yepes (1)
    Amanda Mora (1)

    1. Producción, Estructura y Aplicación de Biomoléculas, Universidad Nacional de Colombia Sede Medellín, Medellín, Colombia
  • 刊物类别:Biochemical Engineering; Environmental Engineering/Biotechnology; Industrial and Production Engineer
  • 刊物主题:Biochemical Engineering; Environmental Engineering/Biotechnology; Industrial and Production Engineering;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:2197-4365
文摘
Background Wastewaters from the textile industry are an environmental problem for the well-known Colombian textile industry. Ligninolytic fungi and their enzymes are an option for the treatment of these wastewaters; however, the Colombian biodiversity has not been deeply evaluated for fungal strains with ligninolytic activities. In this research, 92 Colombian fungal isolates were collected from four locations around the Aburrá valley, Antioquia, Colombia. Their decolorizing activities were evaluated using Novacron Red, Remazol Black and Turquoise Blue in solid and liquid media at different culture conditions. The best fungal isolate was evaluated in the bioremediation of two real effluents and its enzymatic extracts were used in the decolorization of the three dyes.

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