The objectives of this study were to provide a quantitative description of the long-term effects of environmental variability on xylem functional traits, in order to better assess xylem capacity to change in response to climate change. Twenty-six sites throughout the world, primarily in Europe, were chosen where results from long-term measurements of anatomical traits were previously published. Published data on long-term xylem anatomy (conduit size and density) and ring width variability were compiled across a range of tree species, which was subsequently related to variability in temperature, precipitation and nitrogen deposition rates across the study sites using generalized additive models and Bayesian methods. We found some appreciable...
Treeline ecosystems are of great scientific interest to study the effects of limiting environmental ...
International audienceSummary Trait variability in space and time allows plants to adjust to changin...
Xylem hydraulic adjustment to global climatic changes was reported from temperate, boreal, and Medit...
The objectives of this study were to provide a quantitative description of the long-term effects of ...
The objectives of this study were to provide a quantitative description of the long-term effects of ...
The present study assessed the effects of climatic conditions on radial growth and functional anatom...
Climate change can induce substantial modifications in xylem structure and water transport capacity ...
The present study assessed the effects of climatic conditions on radial growth and functional anatom...
It is noteworthy that the largest part of global vegetation biomass depends on a thin layer of cells...
In the Mediterranean region, the widely predicted rise in temperature, change in the precipitation p...
International audiencePremise: Xylem must perform several functions to ensure tree survival and the ...
Plasticity of xylem architecture can be a species specific strategy to reduce vulnerability to clima...
A major foundation of trait-based ecology is that traits have an impact on individual performance. H...
Variability in xylem anatomy is of interest to plant scientists because of the role water transport ...
Treeline ecosystems are of great scientific interest to study the effects of limiting environmental ...
International audienceSummary Trait variability in space and time allows plants to adjust to changin...
Xylem hydraulic adjustment to global climatic changes was reported from temperate, boreal, and Medit...
The objectives of this study were to provide a quantitative description of the long-term effects of ...
The objectives of this study were to provide a quantitative description of the long-term effects of ...
The present study assessed the effects of climatic conditions on radial growth and functional anatom...
Climate change can induce substantial modifications in xylem structure and water transport capacity ...
The present study assessed the effects of climatic conditions on radial growth and functional anatom...
It is noteworthy that the largest part of global vegetation biomass depends on a thin layer of cells...
In the Mediterranean region, the widely predicted rise in temperature, change in the precipitation p...
International audiencePremise: Xylem must perform several functions to ensure tree survival and the ...
Plasticity of xylem architecture can be a species specific strategy to reduce vulnerability to clima...
A major foundation of trait-based ecology is that traits have an impact on individual performance. H...
Variability in xylem anatomy is of interest to plant scientists because of the role water transport ...
Treeline ecosystems are of great scientific interest to study the effects of limiting environmental ...
International audienceSummary Trait variability in space and time allows plants to adjust to changin...
Xylem hydraulic adjustment to global climatic changes was reported from temperate, boreal, and Medit...