Scinovex
articleTop 1% cited

Predictions and tests of climate‐based hypotheses of broad‐scale variation in taxonomic richness

Ecology Letters · 2004 · Vol. 7(12) · pp. 1121–1134
David J. CurrieGary G. MittelbachHoward V. CornellRichard FieldJean‐François GuéganBradford A. HawkinsDawn M. KaufmanJeremy T. KerrThierry OberdorffEileen M. O’BrienJohn R. G. Turner

Abstract

Abstract Broad‐scale variation in taxonomic richness is strongly correlated with climate. Many mechanisms have been hypothesized to explain these patterns; however, testable predictions that would distinguish among them have rarely been derived. Here, we examine several prominent hypotheses for climate–richness relationships, deriving and testing predictions based on their hypothesized mechanisms. The ‘energy–richness hypothesis’ (also called the ‘more individuals hypothesis’) postulates that more productive areas have more individuals and therefore more species. More productive areas do often have more species, but extant data are not consistent with the expected causal relationship from energy to numbers of individuals to numbers of species. We reject the energy–richness hypothesis in its standard form and consider some proposed modifications. The ‘physiological tolerance hypothesis’ postulates that richness varies according to the tolerances of individual species for different sets of climatic conditions. This hypothesis predicts that more combinations of physiological parameters can survive under warm and wet than cold or dry conditions. Data are qualitatively consistent with this prediction, but are inconsistent with the prediction that species should fill climatically suitable areas. Finally, the ‘speciation rate hypothesis’ postulates that speciation rates should vary with climate, due either to faster evolutionary rates or stronger biotic interactions increasing the opportunity for evolutionary diversification in some regions. The biotic interactions mechanism also has the potential to amplify shallower, underlying gradients in richness. Tests of speciation rate hypotheses are few (to date), and their results are mixed.

Evolution and Paleontology StudiesEvolution and Genetic DynamicsEcology and Vegetation Dynamics StudiesSpecies richnessEcologyBody size and species richnessGenetic algorithmBiologyDiversification (marketing strategy)Extant taxonEvolutionary biology
Citations
1,274
FWCI
53.07
field-weighted impact
References
91
Percentile
100%
vs. same field & year
Citations per year
References
The Commonness, And Rarity, of Species
Ecology · 1948 · 1,993 citations
Species diversity in ecological communities
Trends in Ecology & Evolution · 1994 · 1,748 citations
Energy and Large-Scale Patterns of Animal- and Plant-Species Richness
The American Naturalist · 1991 · 1,761 citations
Homage to Santa Rosalia or Why Are There So Many Kinds of Animals?
The American Naturalist · 1959 · 4,108 citations
Neutral theory and community ecology
Ecology Letters · 2004 · 1,121 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Predictions and tests of climate‐based hypotheses of broad‐scale variation in taxonomic richness · Scinovex