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Baldwin, I. T. & Schultz, J. C. Rapid changes in tree leaf chemistry induced by damage: evidence for communication between plants.
These characteristics may change over tree life, reflecting changes in tree competition.
Using satellite data recently made free, they have been tracking changes in tree canopy area around the world.
In Government Reserve Forests, there was no agricultural expansion but changes in tree density and canopy cover were evident.
Severe outbreaks can cause significant changes in tree species composition, age structure, and fuel conditions over broad areas.
After treatment, changes in tree basal area and canopy openness in the pond basins reflected reductions in upland basal areas.
However, how stand-level changes in tree age and structure influence biomass stock and dynamics in old-growth forests is a question that remains unclear.
Here we investigate the effects of habitat fragmentation and drastic changes in tree communities on dung beetle richness and community structure.
Initializing forest landscape models (FLMs) to simulate changes in tree species composition requires accurate fine-scale forest attribute information mapped continuously over large areas.
Grazing systems that combine grasslands and woodlands represent changes in tree cover that influences herbaceous vegetation and may threaten the native forest flora.
We further used nonnative tree pest and plant data to examine strengths and spatial patterns of these stressors and their correlations with projected changes in tree habitat.
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