Isolation and Identification of Indigenous Filamentous Fungus and the Biodegradation of Crude Oil

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Abstract:

14 species of fungi were isolated by the dilution flat method. The laccase activity of numberD2 was the highest (216.45IU) in liquid culture after 15d, it was highest inoculated numberD2, numberD51 and number5 in oil degradation test after 30d of incubation, 48.41IU,5IU and 0.7IU, respectively. The oil degradation rate increased with the time of incubation in COM medium. The rate inoculated numberD52 was the most (64.26%), and was Significantly higher than CK(18.98%). The rate inoculated number3 was the least, and was only 1.40% higher than CK. The Analysis GC-MS results showed that different strains were able to degrade the specific oil components. For the particularity of the strains, it was possible to increase the oil degradation rate with the combination of the strains.

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Advanced Materials Research (Volumes 518-523)

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2553-2561

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May 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Rosa Margesin, Marion Hammerle, Dagmar Tscherko: Microbial Ecology Vol. 259-269(2007), p.53

Google Scholar

[2] Juhasz AL, Naidu R . Pyrene: Int Biodeterior Biodegradation Vol. 57–88 (2000), p.45

Google Scholar

[3] Kanaly RA, Harayama S: J Bacteriol Vol. 2059–2067(2000), P. 182

Google Scholar

[4] Johnson DL, Anderson DR, McGrath SP: Soil Biology. Biochemistry Vol. 2334–2336(2005), P. 37

Google Scholar

[5] Meckenstock RU, Safinowski M, Griebler C: FEMS Microbiol Ecol Vol. 27–36(2004), P. 49

Google Scholar

[6] S.Venkata Mohan, Takuro Kisa, Takeru Ohkuma, et al: Rev Environ Sci Biotechnol Vol. 347-374(2006), p.5

Google Scholar

[7] Baheri H, Meysami P. J. Hazard: Mater Vol. 279-286(2001), P. 89

Google Scholar

[8] Panneer Selvam Suresh, Anil Kumar, Rita Kumar, et al: Journal of Molecular Graphics and Modelling Vol. 845-849(2008), P. 26

Google Scholar

[9] Tomas Hubalek, Simona Vosahlova, Vit Mateju, et al: Arch. Enciron. Contam. Toxicol Vol. 1-7(2007), P. 52

Google Scholar

[10] E.E. Diplock, D.P. Mardlin, K.S. Killham, et al: Environmental Pollution Vol. 1-10(2009)

Google Scholar

[11] Xu R, Lau NL, Lim YG, Obbard JP: Mar Pollut Bull Vol. 1062–1070 (2005), P. 51

Google Scholar

[12] Taylor LT, Jones DM: Chemosphere Vol.1131–1136(2001), P. 44

Google Scholar

[13] Gogoi BK, Dutta NN, Goswami P, Krishna Mohan TR: Adv Environ Res Vol. 767–782(2003), P. 7

Google Scholar

[14] Betancur-Galvis LA, Alvarez-Bernal D, Ramos-Valdivia AC, Dendooven L. Chemosphere Vol. 1749–1760 (2006), P. 62

DOI: 10.1016/j.chemosphere.2005.07.026

Google Scholar

[15] Kirchmann H, Ewnetu W: Biodegradation Vol., 151-156(1998), P. 9

Google Scholar

[16] Jose A. Marin, Jose L. Moreno, Teresa Hernandaz, et al: Biodegradation Vol. 251-261(2006), P. 17

Google Scholar

[17] Antonella Anastasi, Giovanna C. Varese, Francesca Bosco, et al: Bioresource Technology Vol. 6626-6630(2008), P. 99

DOI: 10.1016/j.biortech.2007.12.036

Google Scholar

[18] Semple, K. T., Reid, et al: Environ. Pollut. Vol. 269-283(2001), P. 112

Google Scholar

[19] Sabate J, Vinas M, Solanas AM: Chemosphere Vol. 1648–1659(2006), P. 63

Google Scholar

[20] J.K. Adesodun, D.A. Davidson, J.S.C. Mbagwu: Applied Soil Ecology Vol. 46-57 (2008), P. 39

Google Scholar

[21] Silvia M.Contreras-Ramos, Alvarez-Bernal, Luc Dendooven: Applied Soil Ecology, Vol. 269-276(2009), P. 41

Google Scholar

[22] Maike Schaefer, Filser Juliane: Applied Soil Ecology Vol. 53-62(2007) , P. 36

Google Scholar

[23] Safwat H.Shakir Hanna, R.W. Weaver: Plant and Soil Vol. 127-132(2002), P. 240

Google Scholar

[24] Cunningham CJ, Ivshina IB, Lozinsky VI, Kuyukina MS, Philp JC: Int Biodeter Biodegradation Vol. 167–174(2004), P. 54

DOI: 10.1016/j.ibiod.2004.03.005

Google Scholar

[25] Production of laccase, manganese peroxidase and lignin peroxidase by Brazilianmarine-derived fungi, Enzyme and Microbial Technology, 32–37(2010)

DOI: 10.1016/j.enzmictec.2009.07.014

Google Scholar

[26] Xin Liu,Min Zhao,Qiuyu Wang: Journal of Mortheast Forestry University Vol. 2008, 36(3):41~44. In Chinese

Google Scholar

[27] K.K. Wong, J.D. Richardson, S.D. Mansfied: Biotechnol. Prog Vol. 1025-1029(2000), P. 16

Google Scholar

[28] R. Bourbonnais, M.G. Paice: FEBS Lett Vol. 99-102(1990), P. 267

Google Scholar

[29] Garon D, Sage L, Wouessidjewe D, Seigle-Murandi F: Chemosphere Vol. 159–166(2004), P. 56

DOI: 10.1016/j.chemosphere.2004.02.019

Google Scholar

[30] Antonella Gullotto, Sergio Branciamore, Ilaria Duchi, et al: Bioresource Technology Vol. 8353-8359(2008), P. 99

Google Scholar

[31] Cenek Novotny, Pavla Erbanova, Vaclav Sasek, et al: Biodegradation Vol. 159-168(1999), P. 10

Google Scholar

[32] N.N. Pozdnyakova, V.E. Nikitina, O.V. Turovskaya: Applied Biochemistry and Microbiology Vol. 60-65(2008), P. 44

Google Scholar