Mechanistic niche modelling: combining physiological and spatial data to predict species’ ranges
Top Cited Papers
- 10 March 2009
- journal article
- review article
- Published by Wiley in Ecology Letters
- Vol. 12 (4) , 334-350
- https://doi.org/10.1111/j.1461-0248.2008.01277.x
Abstract
Species distribution models (SDMs) use spatial environmental data to make inferences on species’ range limits and habitat suitability. Conceptually, these models aim to determine and map components of a species’ ecological niche through space and time, and they have become important tools in pure and applied ecology and evolutionary biology. Most approaches are correlative in that they statistically link spatial data to species distribution records. An alternative strategy is to explicitly incorporate the mechanistic links between the functional traits of organisms and their environments into SDMs. Here, we review how the principles of biophysical ecology can be used to link spatial data to the physiological responses and constraints of organisms. This provides a mechanistic view of the fundamental niche which can then be mapped to the landscape to infer range constraints. We show how physiologically based SDMs can be developed for different organisms in different environmental contexts. Mechanistic SDMs have different strengths and weaknesses to correlative approaches, and there are many exciting and unexplored prospects for integrating the two approaches. As physiological knowledge becomes better integrated into SDMs, we will make more robust predictions of range shifts in novel or non‐equilibrium contexts such as invasions, translocations, climate change and evolutionary shifts.Keywords
This publication has 83 references indexed in Scilit:
- Predicting extinction risks under climate change: coupling stochastic population models with dynamic bioclimatic habitat modelsBiology Letters, 2008
- Predicting the fate of a living fossil: how will global warming affect sex determination and hatching phenology in tuatara?Proceedings Of The Royal Society B-Biological Sciences, 2008
- Macrophysiology for a changing worldProceedings Of The Royal Society B-Biological Sciences, 2008
- The cane toad's ( Chaunus [ Bufo ] marinus ) increasing ability to invade Australia is revealed by a dynamically updated range modelProceedings Of The Royal Society B-Biological Sciences, 2007
- Habitat, environment and niche: what are we modelling?Oikos, 2006
- Variation in the sensitivity of organismal body temperature to climate change over local and geographic scalesProceedings of the National Academy of Sciences, 2006
- Combining Population‐Dynamic and Ecophysiological Models to Predict Climate‐Induced Insect Range ShiftsThe American Naturalist, 2006
- Extinction risk from climate changeNature, 2004
- Predicting the impacts of climate change on the distribution of species: are bioclimate envelope models useful?Global Ecology and Biogeography, 2003
- Adaptation of Drosophila to temperature extremes: bringing together quantitative and molecular approachesPublished by Elsevier ,2003