The responses of moss-associated nitrogen fixation and belowground microbial community to chronic Mo and P supplements in subarctic dry heaths. Rousk, K. & Rousk, J. Plant and Soil, 451(1):261–276, June, 2020. Paper doi abstract bibtex Although nitrogen (N) fixation by moss-associated bacteria is the main source of new N in N-limited ecosystems like arctic tundra, we do not know which nutrient, molybdenum (Mo) or phosphorus (P), is rate-limiting for sustaining this process in the long-term. Further, how moss-associated N2 fixation impacts the belowground microbial regulation of decomposition remains unresolved.
@article{rousk_responses_2020,
title = {The responses of moss-associated nitrogen fixation and belowground microbial community to chronic {Mo} and {P} supplements in subarctic dry heaths},
volume = {451},
issn = {1573-5036},
url = {https://doi.org/10.1007/s11104-020-04492-6},
doi = {10.1007/s11104-020-04492-6},
abstract = {Although nitrogen (N) fixation by moss-associated bacteria is the main source of new N in N-limited ecosystems like arctic tundra, we do not know which nutrient, molybdenum (Mo) or phosphorus (P), is rate-limiting for sustaining this process in the long-term. Further, how moss-associated N2 fixation impacts the belowground microbial regulation of decomposition remains unresolved.},
language = {en},
number = {1},
urldate = {2024-03-27},
journal = {Plant and Soil},
author = {Rousk, Kathrin and Rousk, Johannes},
month = jun,
year = {2020},
keywords = {\#nosource, Bryophytes, Cyanobacteria, Nitrogen fixation, Nutrient limitation, Soil fungal and bacterial growth},
pages = {261--276},
}
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