1. Among above-and below-ground traits, specific leaf area (SLA, cm(2) g(-1)) and specific root length (SRL, m g(-1)) are the two key traits reflecting species resource acquisition strategies. However, patterns of variation in SLA and SRL have rarely been examined simultaneously across evolutionary history and environmental gradients, and the SLA-SRL relationship is still controversial on several grounds. 2. We examined the inter-and intraspecific variations in SLA and SRL of different root branching orders and the SLA-SRL relationship across 55 species and 21 plant communities of four vegetation types along a 2000-km transect in the Inner Mongolia grassland. 3. With increasing root branching order, the interspecific variation in SRL increa...
Aim Plant roots are crucial for water and nutrient absorption, but large-scale patterns and underlyi...
Aim Our aim was to address the potential effect of the geographical range size of species on the rel...
There is a fundamental trade-off between leaf traits associated with either resource acquisition or ...
Among above- and belowground traits, specific leaf area (SLA, cm2 g−1) and specific root length (SRL...
P>Variation in plant functional traits is the product of evolutionary and environmental drivers o...
•Variation in plant functional traits is the product of evolutionary and environmental drivers opera...
Characterizing patterns of variation in plant traits across species and environmental gradients is c...
1. Characterizing patterns of variation in plant traits across species and environmental gradients i...
Examining the coordination of leaf and fine root traits not only aids a better understanding of plan...
Examining the coordination of leaf and fine root traits not only aids a better understanding of plan...
Leaves and fine roots are among the most important and dynamic components of terrestrial ecosystems....
Aims Understanding the drivers for leaf traits is critical to improving our predictions on ecosys...
Phylogenetic analyses are essential for disentangling how environmental filtering and competition de...
Background and Aims How functional traits vary with environmental conditions is of fundamental impor...
International audience1- Intraspecific trait variation is an important driver of plant performance i...
Aim Plant roots are crucial for water and nutrient absorption, but large-scale patterns and underlyi...
Aim Our aim was to address the potential effect of the geographical range size of species on the rel...
There is a fundamental trade-off between leaf traits associated with either resource acquisition or ...
Among above- and belowground traits, specific leaf area (SLA, cm2 g−1) and specific root length (SRL...
P>Variation in plant functional traits is the product of evolutionary and environmental drivers o...
•Variation in plant functional traits is the product of evolutionary and environmental drivers opera...
Characterizing patterns of variation in plant traits across species and environmental gradients is c...
1. Characterizing patterns of variation in plant traits across species and environmental gradients i...
Examining the coordination of leaf and fine root traits not only aids a better understanding of plan...
Examining the coordination of leaf and fine root traits not only aids a better understanding of plan...
Leaves and fine roots are among the most important and dynamic components of terrestrial ecosystems....
Aims Understanding the drivers for leaf traits is critical to improving our predictions on ecosys...
Phylogenetic analyses are essential for disentangling how environmental filtering and competition de...
Background and Aims How functional traits vary with environmental conditions is of fundamental impor...
International audience1- Intraspecific trait variation is an important driver of plant performance i...
Aim Plant roots are crucial for water and nutrient absorption, but large-scale patterns and underlyi...
Aim Our aim was to address the potential effect of the geographical range size of species on the rel...
There is a fundamental trade-off between leaf traits associated with either resource acquisition or ...