Symbiosis revisited: phosphorus and acid buffering stimulate N <sub>2</sub> fixation but not <i>Sphagnum</i> growth
Eva van den Elzen(Radboud University Nijmegen), Leon P. M. Lamers(Radboud University Nijmegen), Sarah F. Harpenslager(Radboud University Nijmegen), Geert Hensgens(Radboud University Nijmegen), Mike S. M. Jetten(Radboud University Nijmegen), Katharina F. Ettwig(Radboud University Nijmegen), Martine A. R. Kox(Radboud University Nijmegen), Christian Fritz(Radboud University Nijmegen)
Cited by 28
Related Papers
Nitrite-driven anaerobic methane oxidation by oxygenic bacteria
|Nature|2010|1.8k
Massive nitrogen loss from the Benguela upwelling system through anaerobic ammonium oxidation
|Proceedings of the National Academy of Sciences|2005|747
Evaluation of activity and inhibition effects on Anammox process by batch tests based on the nitrogen gas production
|Enzyme and Microbial Technology|2006|575
Recovering wetland biogeomorphic feedbacks to restore the world’s biotic carbon hotspots
|Science|2022|366
The microbial nitrogen cycle
|Environmental Microbiology|2008|299