Evaluating the sources of potential migrant species: implications under climate change.
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Summary
Almost all species showed decreased survival in plots and years with lower soil moisture, including both residents and potential migrants, and in both locations, the Southern Appalachians and the Piedmont, point out the importance of evaluating the potential sources of migrant species when modeling vegetation response to climate change.
- Type
- article
- Published
- 2008-10-01
- Cited by
- 69
- References
- 65
- OpenAlex
- https://openalex.org/W2168413109
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:15078774
Keywords
Ecology, Climate change, Geography, Environmental science, Biology
References
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- Climate Change and Forest Biodiversity in the Eastern United States: Insights from Inventory Data
- Seedbank, Seedrain and Seedling Recruitment along Climate Gradients in Southern Norway
- Central Appalachians forest ecosystem vulnerability assessment and synthesis: a report from the Central Appalachians Climate Change Response Framework project
- Ecosystem vulnerability assessment and synthesis: a report from the Climate Change Response Framework Project in northern Wisconsin
- Michigan forest ecosystem vulnerability assessment and synthesis: a report from the Northwoods Climate Change Response Framework project
- Thermal acclimation of photosynthesis: a comparison of boreal and temperate tree species along a latitudinal transect.
- Constraints to and conservation implications for climate change adaptation in plants
- Changes in species interactions across a 2.5 km elevation gradient: effects on plant migration in response to climate change
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- Moving forward in global-change ecology: capitalizing on natural variability
- Trends in seedling growth and carbon‐use efficiency vary among broadleaf tree species along a latitudinal transect in eastern North America
- Elevation-dependent responses of tree mast seeding to climate change over 45 years
- The Forests of Isle Royale National Park: Can We Preserve This Pristine Wilderness in the Face of Climate Change?
- Patterns and variability in seedling carbon assimilation: implications for tree recruitment under climate change.
- Quantifying how fine-grained environmental heterogeneity and genetic variation affect demography in an annual plant population
- Plants on the move: The role of seed dispersal and initial population establishment for climate-driven range expansions
- Causes and consequences of unequal seedling production in forest trees: a case study in red oaks.
- Seeing the forest and the trees: multilevel models reveal both species and community patterns
- High‐dimensional coexistence based on individual variation: a synthesis of evidence
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