Microbial diversity assessment of polychlorinated biphenyl–contaminated soils and the biostimulation and bioaugmentation processes

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作者
Elsa Cervantes-González
Mariela Anelhayet Guevara-García
Jaime García-Mena
Víctor Manuel Ovando-Medina
机构
[1] Universidad Autónoma de San Luis Potosí,Department of Chemical Engineering
[2] Coordinación Académica Región Altiplano,Department of Genetic and Molecular Biology, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional
[3] Unidad Zacatenco,undefined
来源
Environmental Monitoring and Assessment | 2019年 / 191卷
关键词
Autochthonous microbial communities; Bioaugmentation; Biostimulation; DNA sequencing; Polychlorinated biphenyls;
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摘要
The aim of this study was to know the biodiversity of total microorganisms contained in two polychlorinated biphenyl-contaminated aged soils and evaluate the strategies of bioaugmentation and biostimulation to biodegrade the biphenyls. Besides, the aerobic cultivable microorganisms were isolated and their capacity to biodegrade a commercial mixture of six congeners of biphenyls was evaluated. Biodiversity of contaminated soils was dominated by Actinobacteria (42.79%) and Firmicutes (42.32%) phyla, and others in smaller proportions such as Proteobacteria, Gemmatimonadetes, Chloroflexi, and Bacteroidetes. At the genus level, the majority of the population did not exceed 7% of relative abundance, including Bacillus, Achromobacter, Clostridium, and Pontibacter. Furthermore, four autochthonous bacterial cultures were possible isolates from the soils, which were identified by partial sequencing of the 16S rRNA gene, as Bacillus sp., Achromobacter sp., Pseudomonas stutzeri, and Bacillus subtilis, which were used for the bioaugmentation process. The bioaugmentation and biostimulation strategies achieved a biodegradation of about 60% of both soils after 8 weeks of the process; also, the four isolates were used as mixed culture to biodegrade a commercial mix of six polychlorinated biphenyl congeners; after 4 weeks of incubation, the concentration decreased from 0.5 mg/L to 0.23 mg/L.
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[31]  
Pirrung M(2006)Serum PCBs and organochlorine pesticides in Slovakia: age, gender, and residence as determinants of organochlorine concentrations Chemosphere 65 410-418
[32]  
Reeder J(2005)Aerobic degradation of polychlorinated biphenyls Applied Microbiology and Biotechnology 67 170-191
[33]  
Sevinsky JR(2014)Flexible membranes of Ag-nanosheet-grafted polyamide-nanofibers as effective 3D SERS substrates Nanoscale 6 4781-4788
[34]  
Turnbaugh PJ(2017)Advances and perspective in bioremediation of polychlorinated biphenyl-contaminated soils Environmental Science and Pollution Research 17 16355-16375
[35]  
Walters WA(2012)Ecological risk assessment of persistent organic pollutants in the arctic Toxicology 181 193-197
[36]  
Widmann J(2015)Chemical and microbiological characterization of an aged PCB-contaminated soil Science of Total Environmental 533 177-186
[37]  
Yatsunenko T(2017)Bioremediation of long-term PCB-contaminated soil by white-rot fungi Journal of Hazardous Materials 324 701-710
[38]  
Zaneveld J(2015)Enhanced degradation of biphenyl from PCB-contaminated sediments: the impact of extracellular organic matter from Micrococcus luteus Applied Microbiology and Biotechnology 99 1989-2000
[39]  
Knight R(2001)The effect of terpenes on the biodegradation of polychlorinated biphenyls by Pseudomonas stutzeri Chemosphere 44 1547-1555
[40]  
Chen F(2013)Bacterial communities of polychlorinated biphenyls polluted soil around an e-waste recycling workshop Soil and Sediment Contamination: An International Journal 22 562-573