International audienceWith the aim to explore how plants acclimate to elevation changes in the understudied (sub)alpine tropics we tested two hypotheses along a 1000-m elevation gradient in Mexico: (H1) due to a severe increase in abiotic constraints at higher elevations, the functional traits of the plant species will converge toward more resource conservation, and (H2) the specific growth forms and biogeographic origins present in the (sub)alpine tropics may influence the interspecific trait variation along the gradient. We measured five aboveground functional traits: specific leaf area (SLA), leaf dry-matter content (LDMC), leaf thickness, leaf area and plant height, of 11 species representing four growth forms: rosette, tussock grass, s...
Studies of genetic adaptation in plant populations along elevation gradients in mountains have a lon...
<div><p>Assessing changes in plant functional traits along gradients is useful for understanding the...
International audience1- Intraspecific trait variation is an important driver of plant performance i...
International audienceWith the aim to explore how plants acclimate to elevation changes in the under...
International audienceClimate warming is shifting the distributions of mountain plant species to hig...
International audienceBackground and Aims: Plant performance is enhanced by balancing above- and bel...
Alpine plants occurring at high elevation are vulnerable to ongoing climate change, yet relatively l...
Premise of the study: Environmental gradients of mountains are reflected in traits that are common t...
Background : Intraspecific functional variability (IFV) along altitudinal gradients is a powerful pr...
Aims: Effects of climate change, especially changes in temperatures and precipitation patterns, are ...
1.Spatial variation in filters imposed by the abiotic environment causes variation in functional tra...
Alpine regions are among the hardest hit by global climate change, experiencing rising temperatures ...
Studies of genetic adaptation in plant populations along elevation gradients in mountains have a lon...
<div><p>Assessing changes in plant functional traits along gradients is useful for understanding the...
International audience1- Intraspecific trait variation is an important driver of plant performance i...
International audienceWith the aim to explore how plants acclimate to elevation changes in the under...
International audienceClimate warming is shifting the distributions of mountain plant species to hig...
International audienceBackground and Aims: Plant performance is enhanced by balancing above- and bel...
Alpine plants occurring at high elevation are vulnerable to ongoing climate change, yet relatively l...
Premise of the study: Environmental gradients of mountains are reflected in traits that are common t...
Background : Intraspecific functional variability (IFV) along altitudinal gradients is a powerful pr...
Aims: Effects of climate change, especially changes in temperatures and precipitation patterns, are ...
1.Spatial variation in filters imposed by the abiotic environment causes variation in functional tra...
Alpine regions are among the hardest hit by global climate change, experiencing rising temperatures ...
Studies of genetic adaptation in plant populations along elevation gradients in mountains have a lon...
<div><p>Assessing changes in plant functional traits along gradients is useful for understanding the...
International audience1- Intraspecific trait variation is an important driver of plant performance i...