Grinnellian and Eltonian niches and geographic distributions of species
Top Cited Papers
- 10 September 2007
- journal article
- Published by Wiley in Ecology Letters
- Vol. 10 (12) , 1115-1123
- https://doi.org/10.1111/j.1461-0248.2007.01107.x
Abstract
In the recent past, availability of large data sets of species presences has increased by orders of magnitude. This, together with developments in geographical information systems and statistical methods, has enabled scientists to calculate, for thousands of species, the environmental conditions of their distributional areas. The profiles thus obtained are obviously related to niche concepts in the Grinnell tradition, and separated from those in Elton’s tradition. I argue that it is useful to define Grinnellian and Eltonian niches on the basis of the types of variables used to calculate them, the natural spatial scale at which they can be measured, and the dispersal of the individuals over the environment. I use set theory notation and analogies derived from population ecology theory to obtain formal definitions of areas of distribution and several types of niches. This brings clarity to several practical and fundamental questions in macroecology and biogeography.Keywords
This publication has 49 references indexed in Scilit:
- Habitat, environment and niche: what are we modelling?Oikos, 2006
- Multi-scale variability in tropical soil nutrients following land-cover changeBiogeochemistry, 2005
- MAPPING THE FUNDAMENTAL NICHE: PHYSIOLOGY, CLIMATE, AND THE DISTRIBUTION OF A NOCTURNAL LIZARDEcology, 2004
- New developments in museum-based informatics and applications in biodiversity analysisTrends in Ecology & Evolution, 2004
- Predicting the impacts of climate change on the distribution of species: are bioclimate envelope models useful?Global Ecology and Biogeography, 2003
- Remote sensing for biodiversity science and conservationTrends in Ecology & Evolution, 2003
- Towards a hierarchical framework for modelling the spatial distribution of animalsJournal of Biogeography, 2001
- General Theory of Competitive Coexistence in Spatially-Varying EnvironmentsTheoretical Population Biology, 2000
- THE GEOGRAPHIC RANGE: Size, Shape, Boundaries, and Internal StructureAnnual Review of Ecology and Systematics, 1996
- An International View of National Biological SurveysAnnals of the Missouri Botanical Garden, 1996