Related Experiment Video
Updated: Apr 12, 2026

Following the Dynamics of Structural Variants in Experimentally Evolved Populations
Published on: February 3, 2023
Evolutionary time-series analysis reveals the signature of frequency-dependent selection on a female mating
Arnaud Le Rouzic1, Thomas F Hansen, Thomas P Gosden
1Laboratoire Évolution, Génomes, et Spéciation, CNRS-LEGS-UPR9034, CNRS-Institut Diversité, Écologie, et Évolution du Vivant-FR3284, Université Paris-Sud, Avenue de la Terrasse, Bâtiment 13, 91198 Gif-sur-Yvette, France.
Abstract:
A major challenge in evolutionary biology is understanding how stochastic and deterministic factors interact and influence macroevolutionary dynamics in natural populations. One classical approach is to record frequency changes of heritable and visible genetic polymorphisms over multiple generations. Here, we combined this approach with a maximum likelihood-based population-genetic model with the aim of understanding and quantifying the evolutionary processes operating on a female mating polymorphism in the blue-tailed damselfly Ischnura elegans. Previous studies on this color-polymorphic species have suggested that males form a search image for females, which leads to excessive mating harassment of common female morphs. We analyzed a large temporally and spatially replicated data set of between-generation morph frequency changes in I. elegans. Morph frequencies were more stable than expected from genetic drift alone, suggesting the presence of selection toward a stable equilibrium that prevents local loss or fixation of morphs. This can be interpreted as the signature of negative frequency-dependent selection maintaining the phenotypic stasis and genetic diversity in these populations. Our novel analytical approach allows the estimation of the strength of frequency-dependent selection from the morph frequency fluctuations around their inferred long-term equilibria. This approach can be extended and applied to other polymorphic organisms for which time-series data across multiple generations are available.
More Related Videos
Related Concept Videos
Frequency-dependent Selection
Types of Selection
Natural Selection and Mating Preferences
Females, due to their biological roles in conception, pregnancy, and nursing,...
Speciation Rates
Mate Choice
Genetics of Speciation

