Bacterial Community Structure in Petroleum Contaminated and Uncontaminated Soils of Mountain Ecosystem
Year 2015,
Volume: 5 Issue: 1, 20 - 31, 01.06.2015
Tinatin Döölotkeldieva
Saykal Bobuşeva
Maxabat Konurbaeva
Abstract
We compared a microbial diversity in uncontaminated and contaminated with petroleum soils in mountain ecosystems in Kyrgyzstan. Culture-dependent and culture - independent methods were used to analyze microbial diversity. PCR primers that target conserved iron binding motifs in alkane monooxygenase (alkB) and cytochrome P450 alkane hydroxylase were used to analyze genes of alkane degrading bacteria in chronically contaminated and uncontaminated sites, using an enrichment culture with dodecane. Analysis of 16S rRNA showed that in contaminated soils BetaProteobacteria phylum populations were abundant. In uncontaminated soil Gammaproteobacteria phylum populations were abundant. The Shannon index (H′) was used to estimate the microdiversity in soils. Diversity was higher in the uncontaminated (H′ = 4,234) than in the contaminated (H′ = 3.632) soil biotopes. These studies have shown that oil contamination affects the structure of local soil microbiota, undermines biodiversity and increases the activity of bacteria involved in hydrocarbon degradation, for example Proteobacteria phylum populations.
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Year 2015,
Volume: 5 Issue: 1, 20 - 31, 01.06.2015
Tinatin Döölotkeldieva
Saykal Bobuşeva
Maxabat Konurbaeva
References
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aspects // Int. Biodeterioration. V. 39. P. 253-285.
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P. 287- 338.
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biphenyl- degrading bacteria, psychrotolerant Pseudomonas strain Cam-1 and mesophilic Burkholderi.
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Rev. V. 45. P.180 -209.
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diversity of a heavily polluted microbial mat and its community changes following degradation of petroleum
compounds// Appl. Environ Microbiol. V. 68.P.1674-1683.
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biodegradation potential of tropical aerobic hydrocarbon-degrading microorganisms // Res Microbiol. V. 155. P.
587-595.
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ofhydrocarbon- assimilating microorganisms isolated from a temperate agricultural soil //Sci.Total Environ.
V.227.P. 237-247.
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aquifer undergoing intrinsic bioremediation // Appl. Environ Microbiol.V.64. P. 3869-3877.
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changes during bioremediation of an experimental oil spill // Appl. Environ Microbiol, 65: 3566-3574.
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biodegradation in the polluted Kuwaiti desert //Appl.MicrobiolBiotechnol. 44: 265-270.
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bacteria in gasoline and diesel station soils// J. Basic Microbiol. 42 : 284-291.
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biodegradation potential of tropical aerobic hydrocarbon-degrading microorganisms //. Res Microbiol. 155: 587-
595.
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2,3-dioxygenase from Pseudomonas sp. strain LB400 // J. Bacteriol. 177: 5834-5843.
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by Rhodococcus sp. strain DK17 // Appl. Environ. Microbiol. 68: 3270-3278.
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software version 4.0 // Mol. Biol. Evol. 24(8): 1596–1599.
- [17] Hurlbert S.H.(1971). The nonconcept of species diversity: a critique and alternative parameters// Ecology, 1971;
52: 577-586.
- [18] Hill M.O. (1973). Diversity and evenness: a unifying notion and its consequences.
- [19] Hill T.C, Walsh K.A, Harris J.A., Moffett B.F. (2003). Using ecological diversity measures with bacterial
communities // FEMS Microbiology Ecology, 43: 1-10.
- [20] Chao A.(1984). Nonparametric estimation of the number of classes in a population. Scandinavian J. Stat. 11:
265-270.
- [21] Pearson A., Kraunz K. S., Sessions A.L, Dekas A.E, Leavitt W.D, Edwards K.J.( 2008). Quantifying
microbial utilization of petroleum hydrocarbons in salt marsh sediments by using the 13C content of bacterial
rRNA// Appl. Environ Microbiol. 74: 1157-1166.
- [22] Viсas M, Sabat J, Espuny M.J, Solanas A.M. ( 2005). Bacterial сommunity dynamics and polycyclic aromatic
hydrocarbon degradation during bioremediation of heavily creosote- contaminated soil// Appl. Environ
Microbiol.71: 7008-7018.
- [23] Wawrik B., Kerkhof L., Kukor J, Zylstra G. ( 2005). Effect of different carbon sources on community
composition of bacterial enrichments from soil//Appl. Environ. Microbiol. 71: 6776- 6783.
- [24] Margesin R, Schinner F. (1997). Laboratory bioremediation experiments with soil from a diesel –oil contaminated
site –significant role of cold–adapted microorganisms and fertilizers// Chem. Technol. Biotechnol. 70: 92-98.
- [25] Margesin R, Schinner F. ( 1997a). Bioremediation of diesel-oil –contaminated alpine soils at low temperatures
//Appl. Microbiol. Boitechnol. 47: 462-468.
- [26] Margesin R, Schinner F. (1998). Oil biodegradation potential in alpine habitats// Arctic Alpine Res. 30: 262-265