Molecular-Level Variation Affects Population Growth in a Butterfly Metapopulation
Open Access
- 25 April 2006
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLoS Biology
- Vol. 4 (5) , e129
- https://doi.org/10.1371/journal.pbio.0040129
Abstract
The dynamics of natural populations are thought to be dominated by demographic and environmental processes with little influence of intraspecific genetic variation and natural selection, apart from inbreeding depression possibly reducing population growth in small populations. Here we analyse hundreds of well-characterised local populations in a large metapopulation of the Glanville fritillary butterfly (Melitaea cinxia), which persists in a balance between stochastic local extinctions and recolonisations in a network of 4,000 discrete habitat patches. We show that the allelic composition of the glycolytic enzyme phosphoglucose isomerase (Pgi) has a significant effect on the growth of local populations, consistent with previously reported effects of allelic variation on flight metabolic performance and fecundity in the Glanville fritillary and Colias butterflies. The strength and the sign of the molecular effect on population growth are sensitive to the ecological context (the area and spatial connectivity of the habitat patches), which affects genotype-specific gene flow and the influence of migration on the dynamics of local populations. The biological significance of the results for Pgi is underscored by lack of any association between population growth and allelic variation at six other loci typed in the same material. In demonstrating, to our knowledge for the first time, that molecular variation in a candidate gene affects population growth, this study challenges the perception that differential performance of individual genotypes, leading to differential fitness, is irrelevant to population dynamics. These results also demonstrate that the spatial configuration of habitat and spatial dynamics of populations contribute to maintenance of Pgi polymorphism in this species.Keywords
This publication has 42 references indexed in Scilit:
- From DNA to Fitness Differences: Sequences and Structures of Adaptive Variants of Colias Phosphoglucose Isomerase (PGI)Molecular Biology and Evolution, 2005
- Genetics and extinctionBiological Conservation, 2005
- A candidate locus for variation in dispersal rate in a butterfly metapopulationProceedings Of The Royal Society B-Biological Sciences, 2005
- Candidate genes for behavioural ecologyTrends in Ecology & Evolution, 2005
- Rapid evolution drives ecological dynamics in a predator–prey systemNature, 2003
- Adaptation at specific loci. VII. Natural selection, dispersal and the diversity of molecular–functional variation patterns among butterfly species complexes (Colias: Lepidoptera, Pieridae)Molecular Ecology, 2003
- Energy Metabolism during Insect Flight: Biochemical Design and Physiological PerformancePhysiological and Biochemical Zoology, 2000
- Inbreeding Depression and Genetic Rescue in a Plant MetapopulationThe American Naturalist, 2000
- Allee Effect and Population Dynamics in the Glanville Fritillary ButterflyOikos, 1998
- Glucosephosphate Isomerase and Fitness: Effects of Temperature on Genotype Dependent Mortality and Enzyme Activity in Two Species of the Genus Gammarus (Crustacea: Amphipoda)Evolution, 1992