DNA stable-isotope probing of oil sands tailings pond enrichment cultures reveals different key players for toluene degradation under methanogenic and sulfidogenic conditions

被引:23
|
作者
Abu Laban, Nidal [1 ]
Dao, Anh [1 ]
Foght, Julia [1 ]
机构
[1] Univ Alberta, Dept Biol, Ctr Sci, CW Biol Sci Ctr 405, Edmonton, AB T6G 2E9, Canada
关键词
anaerobic toluene degradation; tailings; methanogenesis; sulfate reduction; syntrophy; fumarate addition; benzylsuccinate synthase; SULFATE-REDUCING BACTERIA; 16S RIBOSOMAL-RNA; HYDROCARBON DEGRADERS; MICROBIAL COMMUNITIES; ANAEROBIC TOLUENE; GAS-PRODUCTION; FINE TAILINGS; BSSA GENES; DIVERSITY; DESULFOSPOROSINUS;
D O I
10.1093/femsec/fiv039
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Oil sands tailings ponds are anaerobic repositories of fluid wastes produced by extraction of bitumen from oil sands ores. Diverse indigenous microbiota biodegrade hydrocarbons (including toluene) in situ, producing methane, carbon dioxide and/or hydrogen sulfide, depending on electron acceptor availability. Stable-isotope probing of cultures enriched from tailings associated specific taxa and functional genes to C-13(6)- and C-12(7)-toluene degradation under methanogenic and sulfate-reducing conditions. Total DNA was subjected to isopycnic ultracentrifugation followed by gradient fraction analysis using terminal restriction fragment length polymorphism (T-RFLP) and construction of 16S rRNA, benzylsuccinate synthase (bssA) and dissimilatory sulfite reductase (dsrB) gene clone libraries. T-RFLP analysis plus sequencing and in silico digestion of cloned taxonomic and functional genes revealed that Clostridiales, particularly Desulfosporosinus (136 bp T-RF) contained bssA genes and were key toluene degraders during methanogenesis dominated by Methanosaeta. Deltaproteobacterial Desulfobulbaceae (157 bp T-RF) became dominant under sulfidogenic conditions, likely because the Desulfosporosinus T-RF 136 apparently lacks dsrB and therefore, unlike its close relatives, is presumed incapable of dissimilatory sulfate reduction. We infer incomplete oxidation of toluene by Desulfosporosinus in syntrophic association with Methanosaeta under methanogenic conditions, and complete toluene oxidation by Desulfobulbaceae during sulfate reduction.
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页数:12
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