Resource competition and community structure
Series: Monographs in Population Biology ; 17Publication details: Princeton: Princeton University Press, [c1982]Description: 296 pISBN: 9780691083025LOC classification: QH546.3Item type | Current library | Shelving location | Call number | Status | Date due | Barcode | Item holds |
---|---|---|---|---|---|---|---|
Book | ICTS | Rack No 14 | QH546.3 (Browse shelf (Opens below)) | Available | 02787 | ||
Book | ICTS | Rack No 14 | QH546.3 (Browse shelf (Opens below)) | Available | 02786 |
1. Introduction
2. What Are Resources?
3. Competition for a Single Resource
4. Competition for Two Resources
5. Spatial Heterogeneity, Resource Richness, and Species Diversity
6. Resource Ratios and the Species Composition of Plant Communities
7. A Comparison with Classical Competition Theory
8. Space as a Resource, Disturbance, and Community Structure
9. Concluding Questions and Speculations
One of the central questions of ecology is why there are so many different kinds of plants and animals. Here David Tilman presents a theory of how organisms compete for resources and the way their competition promotes diversity. Developing Hutchinson's suggestion that the main cause of diversity is the feeding relations of species, this book builds a mechanistic, resource-based explanation of the structure and functioning of ecological communities. In a detailed analysis of the Park Grass Experiments at the Rothamsted Experimental Station in England, the author demonstrates that the dramatic results of these 120 years of experimentation are consistent with his theory, as are observations in many other natural communities.
The consumer-resource approach of this book is applicable to both animal and plant communities, but the majority of Professor Tilman's discussion concentrates on the structure of plant communities. All theoretical arguments are developed graphically, and formal mathematics is kept to a minimum. The final chapters of the book provide some testable speculations about resources and animal communities and explore such problems as the evolution of "super species," the differences between plant and animal community diversity patterns, and the cause of plant succession.---provided by publisher
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