Global Biodiversity, Biochemical Kinetics, and the Energetic-Equivalence Rule
Top Cited Papers
- 30 August 2002
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 297 (5586), 1545-1548
- https://doi.org/10.1126/science.1072380
Abstract
The latitudinal gradient of increasing biodiversity from poles to equator is one of the most prominent but least understood features of life on Earth. Here we show that species diversity can be predicted from the biochemical kinetics of metabolism. We first demonstrate that the average energy flux of populations is temperature invariant. We then derive a model that quantitatively predicts how species diversity increases with environmental temperature. Predictions are supported by data for terrestrial, freshwater, and marine taxa along latitudinal and elevational gradients. These results establish a thermodynamic basis for the regulation of species diversity and the organization of ecological communities.Keywords
This publication has 21 references indexed in Scilit:
- Effects of Size and Temperature on Metabolic RateScience, 2001
- Global patterns in biodiversityNature, 2000
- The mid-domain effect: geometric constraints on the geography of species richnessTrends in Ecology & Evolution, 2000
- Global scale patterns of fish species richness in riversEcography, 1995
- Latitudinal Gradients in Species Diversity: The Search for the Primary CauseOikos, 1992
- Energy and Large-Scale Patterns of Animal- and Plant-Species RichnessThe American Naturalist, 1991
- Patterns of Species Diversity in Anuran Amphibians in the American TropicsAnnals of the Missouri Botanical Garden, 1988
- Changes in Plant Community Diversity and Floristic Composition on Environmental and Geographical GradientsAnnals of the Missouri Botanical Garden, 1988
- Interspecific allometry of population density in mammals and other animals: the independence of body mass and population energy-useBiological Journal of the Linnean Society, 1987
- Species-Energy Theory: An Extension of Species-Area TheoryOikos, 1983