The rates of species and trait diversification vary across the Tree‐of‐Life and over time. Whereas species richness and clade age generally are decoupled, the correlation of accumulated trait diversity of clades (trait disparity) with clade age remains poorly explored. Total trait disparity may be coupled with clade age if the growth of disparity (disparification) within and across clades is continuous with time in an additive niche expansion process (linear‐cumulative model), or alternatively if the rate of trait disparification varies over time and decreases as ecological space becomes gradually saturated (disparity‐dependent model). Using a clock‐calibrated phylogenetic tree for 143 freshwater macroinvertebrate families and richness and ...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...
Species within clades are commonly assumed to share similar life history traits, but within a given ...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...
The rates of species and trait diversification vary across the Tree‐of‐Life and over time. Whereas s...
The rates of species and trait diversification vary across the Tree‐of‐Life and over time. Whereas s...
International audienceThe rates of species and trait diversification vary across the Tree-of-Life an...
Niche differences are key to understanding the distribution and structure of biodiversity. To examin...
The growing use of functional traits in ecological research has brought new insights into biodiversi...
The growing use of functional traits in ecological research has brought new insights into biodiversi...
Explaining the disparity of species richness across the tree of life is one of the great challenges ...
Explaining the disparity of species richness across the tree of life is one of the great challenges ...
Explaining the disparity of species richness across the tree of life is one of the great challenges ...
Explaining the disparity of species richness across the tree of life is one of the great challenges ...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...
Species within clades are commonly assumed to share similar life history traits, but within a given ...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...
The rates of species and trait diversification vary across the Tree‐of‐Life and over time. Whereas s...
The rates of species and trait diversification vary across the Tree‐of‐Life and over time. Whereas s...
International audienceThe rates of species and trait diversification vary across the Tree-of-Life an...
Niche differences are key to understanding the distribution and structure of biodiversity. To examin...
The growing use of functional traits in ecological research has brought new insights into biodiversi...
The growing use of functional traits in ecological research has brought new insights into biodiversi...
Explaining the disparity of species richness across the tree of life is one of the great challenges ...
Explaining the disparity of species richness across the tree of life is one of the great challenges ...
Explaining the disparity of species richness across the tree of life is one of the great challenges ...
Explaining the disparity of species richness across the tree of life is one of the great challenges ...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...
Species within clades are commonly assumed to share similar life history traits, but within a given ...
Biological systems provide examples of differential success among taxa, from ecosystems with a few d...