This introductory general ecology text features a strong emphasis on helping students grasp the main concepts of ecology while keeping the presentation more applied than theoretical. An evolutionary perspective forms the foundation of the entire discussion. The book begins with the natural history o
Theoretical Ecology: Concepts and Applications
β Scribed by Kevin S. McCann (editor), Gabriel Gellner (editor)
- Publisher
- Oxford University Press
- Year
- 2020
- Tongue
- English
- Leaves
- 318
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Theoretical Ecology: concepts and applications continues the authoritative and established sequence of theoretical ecology books initiated by Robert M. May which helped pave the way for ecology to become a more robust theoretical science, encouraging the modern biologist to better understand the mathematics behind their theories. This latest instalment builds on the legacy of its predecessors with a completely new set of contributions. Rather than placing emphasis on the historical ideas in theoretical ecology, the Editors have encouraged each contribution to: synthesize historical theoretical ideas within modern frameworks that have emerged in the last 10-20 years (e.g. bridging population interactions to whole food webs); describe novel theory that has emerged in the last 20 years from historical empirical areas (e.g. macro-ecology); and finally to cover the rapidly expanding area of theoretical ecological applications (e.g. disease theory and global change theory). The result is a forward-looking synthesis that will help guide the field through a further decade of discovery and development. It is written for upper level undergraduate students, graduate students, and researchers seeking synthesis and the state of the art in growing areas of interest in theoretical ecology, genetics, evolutionary ecology, and mathematical biology.
β¦ Table of Contents
Foreword β’ Robert D. Holt
Detailed table of contents
List of contributors
1 Introduction β’ Gabriel Gellner, Kevin S. McCann, and Emily J. Champagne
2 Species coexistence β’ Peter Chesson
3 The synergistic effects of interaction strength and lags on ecological stability β’ Gabriel Gellner, Kevin S. McCann, and Christopher Greyson-Gaito
4 Non-equilibrium dynamics and stochastic processes β’ Karen C. Abbott
5 The impact of population structure on population and community dynamics β’ AndrΓ© M. de Roos
6 Models for large ecological communitiesβa random matrix approach β’ Stefano Allesina and Jacopo Grilli
7 A structural theory of mutualistic networks β’ Jordi Bascompte and Antonio Ferrera
8 A data-driven approach to complex ecological systems β’ Michio Kondoh, Kazutaka Kawatsu, Yutaka Osada, and Masayuki Ushio
9 Trait-based models of complex ecological networks β’ Ulrich Brose
10 Ecological networks: From structure to dynamics β’ Sonia KΓ©fi
11 Trait-based ecological and eco-evolutionary theory β’ Christopher A. Klausmeier, Colin T. Kremer, and Thomas Koffel
12 Toward a general theory of metacommunity ecology β’ Dominique Gravel and FranΓ§ois Massol
13 Theories of diversity in disease ecology β’ T. Alex Perkins and Jason R. Rohr
14 The impact of temperature on population and community dynamics β’ David A. Vasseur
15 Alternative stable states, tipping points, and early warning signals of ecological transitions β’ John M. Drake, Suzanne M. OβRegan, Vasilis Dakos, Sonia KΓ©fi, and Pejman Rohani
16 Areas of current and future growth β’ Kevin S. McCann and Gabriel Gellner
Glossary
Index
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