Isolation of fungi from dung of wild herbivores for application in bioethanol production

Brazilian Journal of Microbiology - Tập 48 - Trang 648-655 - 2017
Rhulani Makhuvele1, Ignatious Ncube1, Elbert Lukas Jansen van Rensburg1, Daniël Coenrad La Grange2
1University of Limpopo, Department of Biochemistry, Microbiology, and Biotechnology, Sovenga, South Africa
2Unit of Environmental Sciences and Management, North-West University, Potchefstroom Campus, Potchefstroom, South Africa

Tài liệu tham khảo

Lynd, 2005, Consolidated bioprocessing of cellulosic biomass: An update, Curr Opin Biotechnol, 16, 577, 10.1016/j.copbio.2005.08.009 Bansal, 2011, A novel strain of Aspergillus niger producing a cocktail of hydrolytic depolymerising enzymes for the production of second generation biofuels, BioResources, 6, 552, 10.15376/biores.6.1.552-569 Zaldivar, 2001, Fuel ethanol production from lignocellulose: a challenge for metabolic engineering and process integration, Appl Microbiol Biotechnol, 56, 17, 10.1007/s002530100624 Taherzadeh, 2008, Pretreatment of lignocellulosic wastes to improve ethanol and biogas production: a review, Int J Mol Sci, 9, 1621, 10.3390/ijms9091621 Petrova, 2010, Perspectives for the production of bioethanol from lignocellulosic materials, Biotechnol Biotechnol Equip, 24, 529, 10.1080/13102818.2010.10817894 Prasad, 2013, Optimization of cellulase production from a novel bacterial isolate Mesorhizobium sp. from marine source, J Enzym Res, 4, 39 Girio, 2010, Hemicelluloses for fuel ethanol: a review, Bioresour Technol, 101, 4775, 10.1016/j.biortech.2010.01.088 Olsson, 1996, Fermentation of lignocellulosic hydrolysates for ethanol production, Enzyme Microb Technol, 18, 312, 10.1016/0141-0229(95)00157-3 Wahyudi, 2010, Potency of lignocellulose degrading bacteria isolated from buffalo and horse gastrointestinal tract and elephant dung for feed fiber degradation, J Indonesian Trop Anim Agric, 35, 34, 10.14710/jitaa.35.1.34-41 Jahangeer, 2005, Screening and characterization of fungal cellulases isolated from the native environmental source, Pak J Bot, 37, 739 Lorliam, 2013, Characterization of xylose-utilizing yeasts isolated from herbivore faeces in Thailand, Science Asia, 39, 26, 10.2306/scienceasia1513-1874.2013.39.026 Masunga, 2006, Elephant dung decomposition and coprophilous fungi in two habitats of semi-arid Botswana, Mycol Res, 110, 1214, 10.1016/j.mycres.2006.07.004 Fangkum, 2011, Biohydrogen production from mixed xylose/arabinose at thermophilic temperature by anaerobic mixed cultures in elephant dung, Int J Hydrogen Energy, 36, 13928, 10.1016/j.ijhydene.2011.03.098 Farouq, 2012, Isolation and characterization of Coprophilous cellulolytic fungi from Asian elephant (Elephas maximus) dung, J Biol Agr Healthc, 2, 44 Ganesh Kumar, 2010, Antimicrobial activity from the extracts of fungal isolates of soil and dung samples from Kaziranga National Park, Assam, India, J Mycol Med, 20, 283, 10.1016/j.mycmed.2010.08.002 Chen, 2012, A highly efficient beta-glucosidase from a buffalo rumen fungus Neocallimastix patriciarum W5, Biotechnol Biofuels, 5, 1 Sarkar, 2012, Bioethanol production from agricultural wastes: An overview, Renew Energ, 37, 19, 10.1016/j.renene.2011.06.045 Kuhad, 2011, Bioethanol production from pentose sugars: Current status and future prospects, Renew Sustain Energy Rev, 15, 4950, 10.1016/j.rser.2011.07.058 Ilmen, 2011, High level secretion of cellobiohydrolases by Saccharomyces cerevisiae, Biotechnol Biofuels, 4, 30, 10.1186/1754-6834-4-30 Bailey, 1992, Interlaboratory testing of methods for assay of xylanase activity, J Biotechnol, 23, 257, 10.1016/0168-1656(92)90074-J Mudau, 2015, Partial purification and characterization of endo-β-1,4-mannanases from Scopulariopsis candida strains isolated from solar salterns, Afr J Biotechnol, 7, 2279 Chanprasartsuk, 2013, Comparison of methods for identification of yeasts isolated during spontaneous fermentation of freshly crushed pineapple juices, J Agr Sci Tech, 15, 1479 Botha, 2011, The importance and ecology of yeasts in soil, Soil Biol Biochem, 43, 1, 10.1016/j.soilbio.2010.10.001 Martin, 1979, Biodegradtion of turf thatch with wood-decay fungi, Phytopathology, 70, 297, 10.1094/Phyto-70-297 Morais, 2013, D-xylose-fermenting and xylanase-producing yeast species from rotting wood of two Atlantic Rainforest habitats in Brazil, Fungal Genet Biol, 60, 19, 10.1016/j.fgb.2013.07.003 Rao, 2008, Isolation and characterization of ethanol-producing yeasts from fruits and tree barks, Lett Appl Microbiol, 47, 19, 10.1111/j.1472-765X.2008.02380.x Lorliam, 2013, Diversity and fermentation products of xylose-utilizing yeasts isolated from buffalo feces in Thailand, Microbes Environ, 28, 354, 10.1264/jsme2.ME13023 Hasunuma, 2012, Consolidated bioprocessing and simultaneous saccharification and fermentation of lignocellulose to ethanol with thermotolerant yeast strains, Process Biochem, 47, 1287, 10.1016/j.procbio.2012.05.004 Jonsson, 2013, Bioconversion of lignocellulose: inhibitors and detoxification, Biotechnol Biofuels, 6, 16, 10.1186/1754-6834-6-16 Winkelhausen, 1998, Microbial conversion of d-xylose to xylitol, J Ferment Bioeng, 86, 1, 10.1016/S0922-338X(98)80026-3 de Albuquerque, 2014, Biotechnological production of xylitol from lignocellulosic wastes: A review, Process Biochem, 49, 1779, 10.1016/j.procbio.2014.07.010 Mandels, 1976, Recent advances in cellulase technology, Ferment Technol, 54, 267 Soliman, 2015 Reanprayoon, 2012, Tropical soil fungi producing cellulase and related enzymes in biodegradation, J Appl Sci, 12, 1909, 10.3923/jas.2012.1909.1916 Ja’afaru, 2013 Reddy, 2014, Screening, identification and isolation of cellulolytic fungi from soils of Chittoor district, India, Int J Curr Mcirobiol App Sci, 3, 761 Devi, 2012, Isolation and screening of lignocellulose hydrolytic saprophytic fungi from dairy manure soil, Ann Biol Res, 3, 1145 de Vries, 2001, Aspergillus enzymes involved in degradation of plant cell wall polysaccharides, Microbiol Mol Biol Rev, 65, 497, 10.1128/MMBR.65.4.497-522.2001 de Vries, 2000, Synergy between enzymes from Aspergillus involved in the degradation of plant cell wall polysaccharides, Carbohydr Res, 327, 401, 10.1016/S0008-6215(00)00066-5 La Grange, 2010, Engineering cellulolytic ability into bioprocessing organisms, Appl Microbiol Biotechnol, 87, 1195, 10.1007/s00253-010-2660-x Shahbazi, 2014, Gamma and UV radiation induced mutagenesis in Trichoderma reesei to enhance cellulases enzyme activity, Intl J Farm Allied Sci, 3, 543