DENSITY‐DEPENDENT EVOLUTION OF LIFE‐HISTORY TRAITS IN DROSOPHILA MELANOGASTER
- 1 March 1989
- Vol. 43 (2) , 382-392
- https://doi.org/10.1111/j.1558-5646.1989.tb04234.x
Abstract
Populations of Drosophila melanogaster were maintained for 36 generations in r- and K-selected environments in order to test the life-history predictions of theories on density-dependent selection. In the r-selection environment, populations were reduced to low densities by density-independent adult mortality, whereas populations in the K-selection environment were maintained at their carrying capacity. Some of the experimental results support the predictions or r- and K-selection theory; relative to the r-selected populations, the K-selected populations evolved an increased larval-to-adult viability, larger body size, and longer development time at high larval densities. Mueller and Ayala (1981) found that K-selected populations also have a higher rate of population growth at high densities. Other predictions of the thoery are contradicted by the lack of differences between the r and K populations in adult longevity and fecundity and a slower rate of development for r-selected individuals at low densities. The differences between selected populations in larval survivorship, larval-to-adult development time, and adult body size are strongly dependent on larval density, and there is a significant interaction between populations and larval density for each trait. This manifests an inadequacy of the theory on r- and K-selection, which does not take into account such interactions between genotypes and environments. We describe mechanisms that may explain the evolution of preadult life-history traits in our experiment and discuss the need for changes in theories of density-dependent selection.Funding Information
- National Institutes of Health (5T32GM07457‐04)
- National Institutes of Health (GM34303)
- U.S. Department of Energy (AS03‐76EV70200)
This publication has 42 references indexed in Scilit:
- A genetic analysis of path length and pupation height in a natural population of Drosophila melanogasterCanadian Journal of Genetics and Cytology, 1985
- Larval stop, delayed development and survival in overcrowded cultures of Drosophila melanogaster: Effect of urea and uric acidJournal of Insect Physiology, 1985
- Density-Regulated Selection with Genotypic InteractionsThe American Naturalist, 1983
- An Experimental Test of Life History Evolution using Drosophila melanogaster and Hyla regillaThe American Naturalist, 1982
- An Experimental Test of Models Predicting Life-History CharacteristicsThe American Naturalist, 1981
- EVOLUTION OF FITNESS. II. CORRELATED EFFECTS OF NATURAL SELECTION ON THE PRODUCTIVITY AND SIZE OF EXPERIMENTAL POPULATIONS OF DROSOPHILA SERRATAEvolution, 1968
- Selection for Rate of Growth and Its Influence On Competitive Ability of Larvae of Drosophila MelanogasterNetherlands Journal of Zoology, 1968
- Evolution of Fitness in Experimental Populations of Drosophila serrataScience, 1965
- An Analysis of Factors Which Determine Success in Competition for Food Among Larvae of Drosophila MelanogasterArchives Néerlandaises de Zoologie, 1962
- Evolutionary changes in components of fitness and other polygenic traits in Drosophila melanogaster populationsHeredity, 1955