The evolution of phenotypic traits in a predator–prey system subject to Allee effect
This paper considers the evolution of phenotypic traits in a community comprising the populations of predators and prey subject to Allee effect. The evolutionary model is constructed from a deterministic approximation of the stochastic process of mutation and selection. Firstly, we investigate the e...
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Published in | Journal of Theoretical Biology Vol. 262; no. 3; pp. 528 - 543 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
England
Elsevier Ltd
07.02.2010
Elsevier BV |
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ISSN | 0022-5193 1095-8541 1095-8541 |
DOI | 10.1016/j.jtbi.2009.10.022 |
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Abstract | This paper considers the evolution of phenotypic traits in a community comprising the populations of predators and prey subject to Allee effect. The evolutionary model is constructed from a deterministic approximation of the stochastic process of mutation and selection. Firstly, we investigate the ecological and evolutionary conditions that allow for continuously stable strategy and evolutionary branching. We find that the strong Allee effect of prey facilitates the formation of continuously stable strategy in the case that prey population undergoes evolutionary branching if the Allee effect of prey is not strong enough. Secondly, we show that evolutionary suicide is impossible for prey population when the intraspecific competition of prey is symmetric about the origin. However, evolutionary suicide can occur deterministically on prey population if prey individuals undergo strong asymmetric competition and are subject to Allee effect. Thirdly, we show that the evolutionary model with symmetric interactions admits a stable limit cycle if the Allee effect of prey is weak. Evolutionary cycle is a likely outcome of the process, which depends on the strength of Allee effect and the mutation rates of predators and prey. |
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AbstractList | This paper considers the evolution of phenotypic traits in a community comprising the populations of predators and prey subject to Allee effect. The evolutionary model is constructed from a deterministic approximation of the stochastic process of mutation and selection. Firstly, we investigate the ecological and evolutionary conditions that allow for continuously stable strategy and evolutionary branching. We find that the strong Allee effect of prey facilitates the formation of continuously stable strategy in the case that prey population undergoes evolutionary branching if the Allee effect of prey is not strong enough. Secondly, we show that evolutionary suicide is impossible for prey population when the intraspecific competition of prey is symmetric about the origin. However, evolutionary suicide can occur deterministically on prey population if prey individuals undergo strong asymmetric competition and are subject to Allee effect. Thirdly, we show that the evolutionary model with symmetric interactions admits a stable limit cycle if the Allee effect of prey is weak. Evolutionary cycle is a likely outcome of the process, which depends on the strength of Allee effect and the mutation rates of predators and prey.This paper considers the evolution of phenotypic traits in a community comprising the populations of predators and prey subject to Allee effect. The evolutionary model is constructed from a deterministic approximation of the stochastic process of mutation and selection. Firstly, we investigate the ecological and evolutionary conditions that allow for continuously stable strategy and evolutionary branching. We find that the strong Allee effect of prey facilitates the formation of continuously stable strategy in the case that prey population undergoes evolutionary branching if the Allee effect of prey is not strong enough. Secondly, we show that evolutionary suicide is impossible for prey population when the intraspecific competition of prey is symmetric about the origin. However, evolutionary suicide can occur deterministically on prey population if prey individuals undergo strong asymmetric competition and are subject to Allee effect. Thirdly, we show that the evolutionary model with symmetric interactions admits a stable limit cycle if the Allee effect of prey is weak. Evolutionary cycle is a likely outcome of the process, which depends on the strength of Allee effect and the mutation rates of predators and prey. This paper considers the evolution of phenotypic traits in a community comprising the populations of predators and prey subject to Allee effect. The evolutionary model is constructed from a deterministic approximation of the stochastic process of mutation and selection. Firstly, we investigate the ecological and evolutionary conditions that allow for continuously stable strategy and evolutionary branching. We find that the strong Allee effect of prey facilitates the formation of continuously stable strategy in the case that prey population undergoes evolutionary branching if the Allee effect of prey is not strong enough. Secondly, we show that evolutionary suicide is impossible for prey population when the intraspecific competition of prey is symmetric about the origin. However, evolutionary suicide can occur deterministically on prey population if prey individuals undergo strong asymmetric competition and are subject to Allee effect. Thirdly, we show that the evolutionary model with symmetric interactions admits a stable limit cycle if the Allee effect of prey is weak. Evolutionary cycle is a likely outcome of the process, which depends on the strength of Allee effect and the mutation rates of predators and prey. |
Author | Mimura, Masayasu Zu, Jian Yuichiro Wakano, Joe |
Author_xml | – sequence: 1 givenname: Jian surname: Zu fullname: Zu, Jian email: zujian122281@yahoo.com.cn organization: Department of Science and Technology, Meiji University, Kawasaki, Kanagawa 214-8571, Japan – sequence: 2 givenname: Masayasu surname: Mimura fullname: Mimura, Masayasu organization: Meiji Institute for Advanced Study of Mathematical Sciences, 1-1-1 Higashimita, Tamaku, Kawasaki, Kanagawa 214-8571, Japan – sequence: 3 givenname: Joe surname: Yuichiro Wakano fullname: Yuichiro Wakano, Joe organization: Meiji Institute for Advanced Study of Mathematical Sciences, 1-1-1 Higashimita, Tamaku, Kawasaki, Kanagawa 214-8571, Japan |
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Keywords | Evolutionary suicide Evolutionary branching Continuously stable strategy Adaptive dynamics Evolutionary cycle |
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SubjectTerms | Adaptive dynamics Animals Biological Evolution Continuously stable strategy Ecosystem Evolutionary branching Evolutionary cycle Evolutionary suicide Models, Biological Phenotype Predatory Behavior Predatory Behavior - physiology Quantitative Trait, Heritable |
Title | The evolution of phenotypic traits in a predator–prey system subject to Allee effect |
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