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Biology subjects

Audet, T.

Publications and source records attributed to Audet, T..

2 recordsLinked to original sources

The role of resource defensibility in facilitating sexually-selected weapon evolution: An experimental evolution test

Animal weapons have evolved multiple times primarily for battling for access to mates. Despite intra-sexual selection being common, weapon evolution has evolved relatively rarely. So why do weapons not evolve more commonly? It has been hypothesized that three precursors are necessary for the initiation of weapon evolution: high variance in reproductive success, patchy high-value resources, and spatial environments conducive to one-on-one competition. Here, we test this hypothesis by performing experimental evolution in Drosophila melanogaster, utilizing heterogeneous environments where conditions facilitating territorial defense and opportunities for competitive interactions vary. We examine changes in sexually dimorphic morphology and male aggression that are predicted to occur, based on this model. We also examine whether condition dependence for sexual dimorphism has evolved after 35 and 75 generations of experimental evolution. Aggression did increase, albeit modestly, in environments that facilitate resource defense. Morphological changes are modest although with some trait specific changes to allometry, generally in the opposite direction of our predictions. Condition dependence trends in the opposite direction from those predicted by our hypothesis as well. We discuss our results in the context of the necessary conditions for the evolution of weapons, and if, and when condition dependence of trait exaggeration may evolve.

evolutionary biology↗

Sexually discordant selection is associated with trait specific morphological changes and a complex genomic response

Sexes often have differing fitness optima, potentially generating intra-locus sexual conflict, as each sex bears a genetic load of alleles beneficial to the other sex. One strategy to evaluate conflict in the genome is to artificially select populations discordantly, against established sexual dimorphism, reintroducing attenuated conflict. We investigate a long-term artificial selection experiment reversing sexual size dimorphism in Drosophila melanogaster during [~]350 generations of sexually discordant selection. We explore morphological and genomic changes to identify loci under selection between the sexes in discordantly and concordantly size selected treatments. Despite substantial changes to overall size, concordant selection maintained ancestral sexual dimorphism. However, discordant selection altered size dimorphism in a trait-specific manner. We observe multiple, possible soft selective sweeps in the genome, with size related genes showing signs of selection. Patterns of genomic differentiation between the sexes within lineages identified potential sites maintained by sexual conflict. One discordant selection lineage shows a pattern of elevated genomic differentiation on chromosome 3L, consistent with the maintenance of sexual conflict. Our results suggest measurable signs of conflict and differentially segregating alleles between the sexes due to discordant selection.

evolutionary biology↗