Predicting species distribution and abundance responses to climate change: why it is essential to include biotic interactions across trophic levels
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Some like it hot: the influence and implications of climate change on coffee berry borer (Hypothenemus hampei) and coffee production in East AfricaBack from a predicted climatic extinction of an island endemic: a future for the Corsican NuthatchSimulated global change: contrasting short and medium term growth and reproductive responses of a common alpine/Arctic cushion plant to experimental warming and nutrient enhancementDrought and root herbivory interact to alter the response of above-ground parasitoids to aphid infested plants and associated plant volatile signalsAre different facets of plant diversity well protected against climate and land cover changes? A test study in the French AlpsEuropean bats as carriers of viruses with zoonotic potentialSpace can substitute for time in predicting climate-change effects on biodiversityThe role of biotic interactions in shaping distributions and realised assemblages of species: implications for species distribution modellingTheoretical perspectives on the statics and dynamics of species' borders in patchy environmentsVulnerability of stream biota to climate change in mediterranean climate regions: a synthesis of ecological responses and conservation challengesModel-based conservation planning of the genetic diversity of Phellodendron amurense Rupr due to climate changeLong-term monitoring at multiple trophic levels suggests heterogeneity in responses to climate change in the Canadian Arctic tundra.Focusing ecological research for conservation.A road map for integrating eco-evolutionary processes into biodiversity models.Phenological tracking enables positive species responses to climate change.Impacts associated with the recent range shift of the aeolid nudibranch Phidiana hiltoni (Mollusca, Opisthobranchia) in California.Climate change effects on above- and below-ground interactions in a dryland ecosystem.Influence of global climate change on chemical fate and bioaccumulation: the role of multimedia models.Invertebrates, ecosystem services and climate change.Enemy release promotes range expansion in a host plant.Future climate change will favour non-specialist mammals in the (sub)arctics.Drought alters interactions between root and foliar herbivores.Means and extremes: building variability into community-level climate change experiments.Extended season for northern butterflies.Effects of simulated heat waves on an experimental plant-herbivore-predator food chain.Temperature-dependent shifts in herbivore performance and interactions drive nonlinear changes in crop damages.Temperature can interact with landscape factors to affect songbird productivity.Disparity in elevational shifts of European trees in response to recent climate warming.Predicting shifts in parasite distribution with climate change: a multitrophic level approach.Aphid-willow interactions in a high Arctic ecosystem: responses to raised temperature and goose disturbance.Moving forward: dispersal and species interactions determine biotic responses to climate change.Global climate change and the evolutionary ecology of ecosystem functioning.Effects of local adaptation and interspecific competition on species' responses to climate change.The future of species under climate change: resilience or decline?Effects of temperature and copper pollution on soil community--extreme temperature events can lead to community extinction.Predicted responses of invasive mammal communities to climate-related changes in mast frequency in forest ecosystems.Plant movements and climate warming: intraspecific variation in growth responses to nonlocal soils.The European functional tree of bird life in the face of global change.Potential impacts of climate change on insect communities: a transplant experiment.Above- and belowground biotic interactions facilitate relocation of plants into cooler environments.
P2860
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P2860
Predicting species distribution and abundance responses to climate change: why it is essential to include biotic interactions across trophic levels
description
2010 nî lūn-bûn
@nan
2010 թուականի Յուլիսին հրատարակուած գիտական յօդուած
@hyw
2010 թվականի հուլիսին հրատարակված գիտական հոդված
@hy
2010年の論文
@ja
2010年論文
@yue
2010年論文
@zh-hant
2010年論文
@zh-hk
2010年論文
@zh-mo
2010年論文
@zh-tw
2010年论文
@wuu
name
Predicting species distributio ...... ractions across trophic levels
@ast
Predicting species distributio ...... ractions across trophic levels
@en
type
label
Predicting species distributio ...... ractions across trophic levels
@ast
Predicting species distributio ...... ractions across trophic levels
@en
prefLabel
Predicting species distributio ...... ractions across trophic levels
@ast
Predicting species distributio ...... ractions across trophic levels
@en
P2860
P50
P356
P1476
Predicting species distributio ...... ractions across trophic levels
@en
P2860
P304
P356
10.1098/RSTB.2010.0037
P407
P577
2010-07-01T00:00:00Z