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Consistent timelines, divergent end points: plant community change in multiple tallgrass nitrogen addition
Kimberly J Komatsu1, Meghan L Avolio2, John Blair3
1Department of Biology, University of North Carolina Greensboro, Greensboro, NC, USA. kjkomatsu@uncg.edu.
Human activities have increased nitrogen (N) leading to gradual plant community changes in tallgrass prairies. Long-term studies reveal shifts towards fast-growing, weedy species, impacting ecosystem stability.
Area of Science:
- Ecology
- Environmental Science
Background:
- Human activities have globally increased nitrogen (N) bioavailability, affecting plant productivity and species richness.
- The dynamics and final composition of plant communities under N additions are not fully understood.
Purpose of the Study:
- To determine if plant community change with N addition is gradual or abrupt.
- To identify environmental drivers of short-term compositional changes.
- To map plant community end points after long-term N addition.
Main Methods:
- Synthesis of data from six long-term N addition experiments in tallgrass prairie.
- Analysis of plant community composition changes over time.
- Assessment of environmental perturbations (precipitation, herbivory, fire) as catalysts for change.
Main Results:
- Most plant community change occurred gradually over several years of chronic N addition.
- No evidence suggests other perturbations catalyzed N-driven compositional changes.
- Final community composition varied across experiments, influenced by initial conditions.
- Dominant species in N-added communities were fast-growing, weedy species.
Conclusions:
- Plant community shifts in response to N addition are gradual and influenced by initial species composition.
- Long-term experiments are crucial for understanding N addition impacts, as short-term studies may underestimate responses.
- Altered N bioavailability can lead to significant shifts in tallgrass prairie plant communities, potentially affecting ecosystem function and stability.
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