Aim: Despite several recent efforts to map plant traits and to identify their climatic drivers, there are still major gaps. Global trait patterns for major functional groups, in particular, the differences between woody and herbaceous plants, have yet to be identified. Here, we take advantage of big data efforts to compile plant species occurrence and trait data to analyse the spatial patterns of assemblage means and variances of key plant traits. We tested whether these patterns and their climatic drivers are similar for woody and herbaceous plants. Location: New World (North and South America). Methods: Using the largest currently available database of plant occurrences, we provide maps of 200 x 200 km grid-cell trait means and va...
Aim: Climbing plants (lianas, vines, scramblers) are under-represented in many global datasets that ...
Aim: Plant trait databases often contain traits that are correlated, but for whom direct (undirected...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...
Aim: Despite several recent efforts to map plant traits and to identify their climatic drivers, ther...
Aim: In recent years evidence has accumulated that plant species are differentially sorted from regi...
Improved estimation of climate niches is critical, given climate change. Plant adaptation to climate...
Aim In recent years evidence has accumulated that plant species are differentially sorted from regio...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...
Plant species can show considerable morphological and functional variation along environmental gradi...
Aim Intraspecific trait variation (ITV) can be large within natural plant communities, influencing l...
Aim: Climbing plants (lianas, vines, scramblers) are under-represented in many global datasets that ...
Aim: Plant trait databases often contain traits that are correlated, but for whom direct (undirected...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...
Aim: Despite several recent efforts to map plant traits and to identify their climatic drivers, ther...
Aim: In recent years evidence has accumulated that plant species are differentially sorted from regi...
Improved estimation of climate niches is critical, given climate change. Plant adaptation to climate...
Aim In recent years evidence has accumulated that plant species are differentially sorted from regio...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...
Plant species can show considerable morphological and functional variation along environmental gradi...
Aim Intraspecific trait variation (ITV) can be large within natural plant communities, influencing l...
Aim: Climbing plants (lianas, vines, scramblers) are under-represented in many global datasets that ...
Aim: Plant trait databases often contain traits that are correlated, but for whom direct (undirected...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...