Resolving Ecosystem Complexity (MPB-47) / / Oswald J. Schmitz.

An ecosystem's complexity develops from the vast numbers of species interacting in ecological communities. The nature of these interactions, in turn, depends on environmental context. How do these components together influence an ecosystem's behavior as a whole? Can ecologists resolve an e...

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Superior document:Title is part of eBook package: De Gruyter Princeton University Press eBook-Package Backlist 2000-2013
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Place / Publishing House:Princeton, NJ : : Princeton University Press, , [2010]
©2010
Year of Publication:2010
Edition:Course Book
Language:English
Series:Monographs in Population Biology ; 47
Online Access:
Physical Description:1 online resource (192 p.) :; 32 line illus.
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505 0 0 |t Frontmatter --   |t Contents --   |t List of Illustrations --   |t List of Tables --   |t Preface --   |t CHAPTER 1. Introduction --   |t CHAPTER 2. Conceptualizing Ecosystem Structure --   |t CHAPTER 3. Trophic Dynamics: Why Is the World Green? --   |t CHAPTER 4. The Green World and the Brown Chain --   |t CHAPTER 5. The Evolutionary Ecology of Trophic Control in Ecosystems --   |t CHAPTER 6. The Whole and the Parts --   |t CHAPTER 7. The Ecological Theater and the Evolutionary Ecological Play --   |t Closing Remarks --   |t References --   |t Index --   |t Monographs in Population Biology 
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520 |a An ecosystem's complexity develops from the vast numbers of species interacting in ecological communities. The nature of these interactions, in turn, depends on environmental context. How do these components together influence an ecosystem's behavior as a whole? Can ecologists resolve an ecosystem's complexity in order to predict its response to disturbances? Resolving Ecosystem Complexity develops a framework for anticipating the ways environmental context determines the functioning of ecosystems. Oswald Schmitz addresses the critical questions of contemporary ecology: How should an ecosystem be conceptualized to blend its biotic and biophysical components? How should evolutionary ecological principles be used to derive an operational understanding of complex, adaptive ecosystems? How should the relationship between the functional biotic diversity of ecosystems and their properties be understood? Schmitz begins with the universal concept that ecosystems are comprised of species that consume resources and which are then resources for other consumers. From this, he deduces a fundamental rule or evolutionary ecological mechanism for explaining context dependency: individuals within a species trade off foraging gains against the risk of being consumed by predators. Through empirical examples, Schmitz illustrates how species use evolutionary ecological strategies to negotiate a predator-eat-predator world, and he suggests that the implications of species trade-offs are critical to making ecology a predictive science. Bridging the traditional divides between individuals, populations, and communities in ecology, Resolving Ecosystem Complexity builds a systematic foundation for thinking about natural systems. 
530 |a Issued also in print. 
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546 |a In English. 
588 0 |a Description based on online resource; title from PDF title page (publisher's Web site, viewed 30. Aug 2021) 
650 0 |a Biodiversity conservation. 
650 0 |a Biotic communities. 
650 0 |a Ecosystem management. 
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