Geomicrobiology Journal · 2014 · 19 citations · 47 references
Groundwater QualityEngineeringPhysiological FlexibilityRedox BiologyHumic Substance-Soil BiochemistryMicrobial CommunitiesHumic SubstancesMicrobial EcologySoil MicrobiologyEnvironmental MicrobiologyRrna GeneGroundwater PollutionGroundwater HydrogeochemistryAnoxic AquifersEnvironmental EngineeringEnvironmental RemediationMicrobiologyMedicineGroundwater Remediation
Humic substances can mediate electron transfer between microorganisms and Fe(III) minerals. Because it is unknown which microorganisms reduce humics in anoxic aquifers, we analyzed the diversity and physiological flexibility of Fe(III)-, humics-, and AQDS-reducers, which were present at up to 106 cells g−1. No significant differences in 16S rRNA gene based diversity were found between enrichment cultures reducing ferrihydrite, humics or AQDS. Even after repeated transfers many of the enrichments retained the ability to switch to other electron acceptors. This suggests that humics- and Fe(III)-reducing microorganisms in anoxic aquifers are rather versatile and able to reduce different extracellular electron acceptors.
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Gerard Muyzer, Ellen C. de Waal, André G. Uitterlinden · Applied and Environmental Microbiology · 1993 · 11.4K citations · Full text
Ferrozine---a new spectrophotometric reagent for iron
Lawrence L. Stookey · Analytical Chemistry · 1970 · 4.7K citations
Humus Chemistry—Genesis, Composition, Reactions
J. W. Parsons · Soil Science · 1983 · 4.1K citations
Humic substances as electron acceptors for microbial respiration
Derek R. Lovley, John D. Coates, Elizabeth L. Blunt‐Harris et al. · Nature · 1996 · 1.8K citations