Experimental Evidence for Density-Dependent Regulation and Selection on Trinidadian Guppy Life Histories

Recent study of feedbacks between ecological and evolutionary processes has renewed interest in population regulation and density-dependent selection because they represent black-box descriptions of these feedbacks. The roles of population regulation and density-dependent selection in life-history e...

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Veröffentlicht in:The American naturalist 2013-01, Vol.181 (1), p.25-38
Hauptverfasser: Bassar, Ronald D., Lopez-Sepulcre, Andres, Reznick, David N., Travis, Joseph
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container_issue 1
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container_title The American naturalist
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creator Bassar, Ronald D.
Lopez-Sepulcre, Andres
Reznick, David N.
Travis, Joseph
description Recent study of feedbacks between ecological and evolutionary processes has renewed interest in population regulation and density-dependent selection because they represent black-box descriptions of these feedbacks. The roles of population regulation and density-dependent selection in life-history evolution have received a significant amount of theoretical attention, but there are few empirical examples demonstrating their importance. We address this challenge in natural populations of the Trinidadian guppy (Poecilia reticulata) that differ in their predation regimes. First, we tested whether natural populations of guppies are regulated by density dependence and quantified in which phases of the life cycle the effects of density are important. We found that guppies from low-predation (LP) environments are tightly regulated and that the density-dependent responses disproportionately affected some size classes. Second, we tested whether there are differences in density-dependent selection between guppies from LP or high-predation (HP) environments. We found that the fitness of HP guppies is more sensitive to the depressant effects of density than the fitness of LP guppies. Finally, we used an evolutionary invasion analysis to show that, depending on the effect of density on survival of the HP phenotype, this greater sensitivity of the HP phenotype to density can partially explain the evolution of the LP phenotype. We discuss the relevance of these findings to the study of feedbacks between ecology and evolution.
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subjects Adaptation, Physiological
Agnatha. Pisces
Animal and plant ecology
Animal populations
Animal, plant and microbial ecology
Animals
Biological and medical sciences
Biological Evolution
Demography
Ecological competition
Ecological life histories
Evolution
Evolutionary biology
Experiment design
Female
Fish
Food Chain
Fresh water ecosystems
Fundamental and applied biological sciences. Psychology
General aspects
Genetic Fitness
Genotype & phenotype
Male
Marine ecology
Models, Biological
Phenotypes
Poecilia - genetics
Poecilia - physiology
Population Density
Population Dynamics
Population growth
Population growth rate
Predation
Selection, Genetic
Size distribution
Synecology
Trinidad and Tobago
Vertebrates: general zoology, morphology, phylogeny, systematics, cytogenetics, geographical distribution
title Experimental Evidence for Density-Dependent Regulation and Selection on Trinidadian Guppy Life Histories
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