Aims To clarify whether variation in leaf traits with climate differs with scale, i.e. across species and within a species, and to detect whether plant functional group affects species-specific response. Methods Leaf dry matter content (LDMC), specific leaf area (SLA), mass-and area-based leaf N (N-mass, N-area) and leaf P concentrations (P-mass, P-area) and leaf chlorophyll concentration (SPAD) were measured for 92 woody plant species in two botanical gardens in China. The two gardens share plant species in common but differ in climate. Leaf trait variation between the two gardens was examined via mean comparison at three scales: all species together, species grouped into plant functional groups and within a species. A meta-analysis was pe...
Nitrogen (N) has great ecological importance, but the biogeographic pattern across forest biomes in ...
Phenotypic trait variation plays a major role in the response of plants to global environmental chan...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...
Plant functional ecology requires the quantification of trait variation and its controls. Field meas...
Plant functional ecology requires the quantification of trait variation and its controls. Field meas...
Dynamic global vegetation models (DGVMs) typically rely on plant functional types (PFTs), which are ...
Abstracts: A long-standing goal of ecology and forest management is to understand the environmental ...
Plant ecologists have long been interested in quantifying how leaf traits vary with climate factors,...
<p>Nitrogen (N) has great ecological importance, but the biogeographic pattern across forest biomes ...
Background and Aims How functional traits vary with environmental conditions is of fundamental impor...
Variation in climate has been demonstrated to be a powerful driver of selection and local adaptation...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...
Although broad-scale inter-specific patterns of leaf traits are influenced by climate, soil, and tax...
Although broad-scale inter-specific patterns of leaf traits are influenced by climate, soil, and tax...
Phenotypic trait variation plays a major role in the response of plants to global environmental chan...
Nitrogen (N) has great ecological importance, but the biogeographic pattern across forest biomes in ...
Phenotypic trait variation plays a major role in the response of plants to global environmental chan...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...
Plant functional ecology requires the quantification of trait variation and its controls. Field meas...
Plant functional ecology requires the quantification of trait variation and its controls. Field meas...
Dynamic global vegetation models (DGVMs) typically rely on plant functional types (PFTs), which are ...
Abstracts: A long-standing goal of ecology and forest management is to understand the environmental ...
Plant ecologists have long been interested in quantifying how leaf traits vary with climate factors,...
<p>Nitrogen (N) has great ecological importance, but the biogeographic pattern across forest biomes ...
Background and Aims How functional traits vary with environmental conditions is of fundamental impor...
Variation in climate has been demonstrated to be a powerful driver of selection and local adaptation...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...
Although broad-scale inter-specific patterns of leaf traits are influenced by climate, soil, and tax...
Although broad-scale inter-specific patterns of leaf traits are influenced by climate, soil, and tax...
Phenotypic trait variation plays a major role in the response of plants to global environmental chan...
Nitrogen (N) has great ecological importance, but the biogeographic pattern across forest biomes in ...
Phenotypic trait variation plays a major role in the response of plants to global environmental chan...
Plant functional traits can predict community assembly and ecosystem functioning and are thus widely...