Applied and Environmental Microbiology · 2011 · 69 citations · 38 references
EngineeringMicrobial PhysiologyAmmonium AvailabilityMicrobial EvolutionAnaerobic CulturingMicrobial EcologySoil MicrobiologyEnvironmental MicrobiologySimulated Creek EcosystemsAerobic CulturingMicrobial DiversityMicrobial ConsortiaAmmonia-oxidizing Microbial CommunityAmmoniaMicrobiomeSoil BiotechnologyEnvironmental EngineeringClay TilesMicrobiologyMedicineMicrobiological DegradationAmmonia-oxidizing Bacteria
The ammonia-oxidizing microbial community colonizing clay tiles in flow channels changed in favor of ammonia-oxidizing bacteria during a 12-week incubation period even at originally high ratios of ammonia-oxidizing archaea to ammonia-oxidizing bacteria (AOB). AOB predominance was established more rapidly in flow channels incubated at 350 μM NH(4)(+) than in those incubated at 50 or 20 μM NH(4)(+). Biofilm-associated potential nitrification activity was first detected after 28 days and was positively correlated with bacterial but not archaeal amoA gene copy numbers.
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Isolation of an autotrophic ammonia-oxidizing marine archaeon
Martin Könneke, Anne E. Bernhard, José R. de la Torre et al. · Nature · 2005 · 2.8K citations
Jan-henrich Rotthauwe, K.-P. Witzel, Werner Liesack · Applied and Environmental Microbiology · 1997 · 2.8K citations · Full text
Control of Nitrogen Export from Watersheds by Headwater Streams
Bruce J. Peterson, W. M. Wollheim, Patrick J. Mulholland et al. · Science · 2001 · 1.5K citations