| Frontiers of Biogeography | |
| The jigsaw model: a biogeographic model that partitions habitat heterogeneity from area | |
| article | |
| Mark D. Sutton1  Euan N. Furness1  Erin E. Saupe3  Russell J. Garwood4  Philip D. Mannion6  | |
| [1] Department of Earth Sciences and Engineering, Imperial College London, South Kensington Campus;Science and Solutions for a Changing Planet DTP, Grantham Institute, Imperial College London, South Kensington Campus;Department of Earth Sciences, University of Oxford;Department of Earth and Environmental Sciences, University of Manchester;Science Group;Department of Earth Sciences, University College London | |
| 关键词: biodiversity; choros model; habitat heterogeneity; habitat loss; island biogeography; island species-area relationship; species-area relationship; species richness; | |
| DOI : 10.21425/F5FBG58477 | |
| 学科分类:社会科学、人文和艺术(综合) | |
| 来源: International Biogeography Society | |
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【 摘 要 】
Species–area models now frequently include habitat heterogeneity. These models often fit real-world data better than those that exclude this factor. However, such models usually link the effects of habitat heterogeneity and study area. Critically, we show that difficulties in quantifying habitat heterogeneity within these models can lead to distortions of the apparent effect of area on species richness. Here, we derive a model that minimises these distortions by partitioning the influence of habitat heterogeneity from that of area, without compromising ease of application. This ‘jigsaw model’ achieves this by assuming that different habitats within an area can support similar numbers of species. We compare the behaviour of this model to that of existing models of similar complexity using both simulated island ecosystems and 40 published empirical datasets. The effects of habitat heterogeneity and area on species richness vary independently in our simulations, and these independent effects are recovered by the jigsaw model. This flexibility, however, is not present when the same data are analysed using other models of similar complexity. When applied to real-world data, the jigsaw model demonstrates that the relative importance of area and habitat heterogeneity varies depending on the study system. The jigsaw model provides the best fit to real-world data (according to AICc) of all tested models in logarithmic form, and the second best fit, after the choros model, in power-law form. Our results demonstrate the importance of partitioning the effects of habitat heterogeneity and area on species richness in biogeographic models. The jigsaw model is a simple but powerful tool for such partitioning. It has the potential to elucidate the underlying drivers of species richness patterns, and to be used as a tool in biological conservation projects, where data are often incomplete.
【 授权许可】
CC BY
【 预 览 】
| Files | Size | Format | View |
|---|---|---|---|
| RO202307110002228ZK.pdf | 1154KB |
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