Scinovex
review Open AccessTop 1% cited

Environmental heterogeneity as a universal driver of species richness across taxa, biomes and spatial scales

Ecology Letters · 2014 · Vol. 17(7) · pp. 866–880
Anke SteinKatharina GerstnerHolger Kreft

Abstract

Environmental heterogeneity is regarded as one of the most important factors governing species richness gradients. An increase in available niche space, provision of refuges and opportunities for isolation and divergent adaptation are thought to enhance species coexistence, persistence and diversification. However, the extent and generality of positive heterogeneity-richness relationships are still debated. Apart from widespread evidence supporting positive relationships, negative and hump-shaped relationships have also been reported. In a meta-analysis of 1148 data points from 192 studies worldwide, we examine the strength and direction of the relationship between spatial environmental heterogeneity and species richness of terrestrial plants and animals. We find that separate effects of heterogeneity in land cover, vegetation, climate, soil and topography are significantly positive, with vegetation and topographic heterogeneity showing particularly strong associations with species richness. The use of equal-area study units, spatial grain and spatial extent emerge as key factors influencing the strength of heterogeneity-richness relationships, highlighting the pervasive influence of spatial scale in heterogeneity-richness studies. We provide the first quantitative support for the generality of positive heterogeneity-richness relationships across heterogeneity components, habitat types, taxa and spatial scales from landscape to global extents, and identify specific needs for future comparative heterogeneity-richness research.

Ecology and Vegetation Dynamics StudiesSpecies Distribution and Climate ChangePlant and animal studiesSpecies richnessSpatial heterogeneityEcologyBody size and species richnessBiomeSpatial ecologyGeographyNicheHabitatVegetation (pathology)

MeSH terms

AnimalsEnvironmentPlantsPopulation DynamicsEcosystemBiodiversity

Funding

  • Solar Energy Technologies Office
Citations
1,900
FWCI
94.59
field-weighted impact
References
109
Percentile
100%
vs. same field & year
Citations per year
Cited by
Citation Network

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