Understanding how environmental change alters the composition of plant assemblages, and how this in turn affects ecosystem functioning is a major challenge in the face of global climate change. Assuming that values of plant traits express species adaptations to the environment, the trait-based approach is a promising way to achieve this goal. Nevertheless, how functional traits are related to species’ environmental tolerances and how trait spectra respond to broad-scale environmental gradients remains largely unexplored. Here, we identify the main trait spectra for US angiosperm trees by testing hypotheses for the relationships between functional traits and species’ environmental tolerances to environmental stresses, as well as qu...
Climate change is expected to exacerbate drought for many plants, making drought tolerance a key dri...
Increased droughts impair tree growth worldwide. This study analyzes hydraulic and carbon traits of ...
Aim Intraspecific trait variation (ITV) can be large within natural plant communities, influencing l...
Understanding how environmental change alters the composition of plant assemblages, and how this in ...
Leaf-level determinants of species environmental stress tolerance are still poorly understood. Here,...
Thesis (Ph.D.)--University of Washington, 2017-06Ecology in the 21st century faces the considerable ...
Aim: Intraspecific trait variation is fundamental to understanding a species' adaptive capacity. Ass...
The adaptation of plant species to their biotic and abiotic environment is manifested in their trait...
Climate change is stressing many forests around the globe, yet some tree species may be able to pers...
Due to the projected increases climatic variability, including an increased frequency of extreme cli...
1. Plant traits can be used to predict ecosystem responses to environmental change using a response–...
The integration of functional traits into vulnerability assessments is a promising approach to quant...
Functional traits offer a promising avenue to improve predictions of species range shifts under clim...
The last decade has seen a proliferation of studies that use plant functional traits to assess how p...
Adaptive syndromes and their evolutionary constraints represent a powerful construct for understandi...
Climate change is expected to exacerbate drought for many plants, making drought tolerance a key dri...
Increased droughts impair tree growth worldwide. This study analyzes hydraulic and carbon traits of ...
Aim Intraspecific trait variation (ITV) can be large within natural plant communities, influencing l...
Understanding how environmental change alters the composition of plant assemblages, and how this in ...
Leaf-level determinants of species environmental stress tolerance are still poorly understood. Here,...
Thesis (Ph.D.)--University of Washington, 2017-06Ecology in the 21st century faces the considerable ...
Aim: Intraspecific trait variation is fundamental to understanding a species' adaptive capacity. Ass...
The adaptation of plant species to their biotic and abiotic environment is manifested in their trait...
Climate change is stressing many forests around the globe, yet some tree species may be able to pers...
Due to the projected increases climatic variability, including an increased frequency of extreme cli...
1. Plant traits can be used to predict ecosystem responses to environmental change using a response–...
The integration of functional traits into vulnerability assessments is a promising approach to quant...
Functional traits offer a promising avenue to improve predictions of species range shifts under clim...
The last decade has seen a proliferation of studies that use plant functional traits to assess how p...
Adaptive syndromes and their evolutionary constraints represent a powerful construct for understandi...
Climate change is expected to exacerbate drought for many plants, making drought tolerance a key dri...
Increased droughts impair tree growth worldwide. This study analyzes hydraulic and carbon traits of ...
Aim Intraspecific trait variation (ITV) can be large within natural plant communities, influencing l...