bioRxiv · 10.1101/2023.08.12.552953
Sexually dimorphic leading-edge serrations evolved in silent swallows
Abstract
Leading-edge serrations are specialized feather structures, mitigating acoustic noise during foraging flight in owls, and have been extensively studied and applied to man-made noise-reducing structures. Similar structures occur in swallows, although the ecological functions of the serrations in these species remain unclear. I conducted macroevolutionary analyses of hirundines (Aves: Hirundininae), in which leading-edge serrations have evolved multiple times, to examine their evolution in relation to ecological context. I found that silent hirundines showed a higher probability of possessing leading-edge serrations, indicating that leading-edge serrations of swallows have an acoustic function as in owls. However, the probability of possessing leading-edge serrations had no detectable association with prey type in hirundines, indicating that their acoustic functions would evolve independent of foraging adaptation in this clade. Instead, the presence of leading-edge serrations was positively associated with relative testes mass, a well-known index of sperm competition, in hirundines. These findings explain sexually dimorphic expression of leading-edge serrations, a unique characteristic in this clade. In contrast to owls, in which serrations are considered an adaptation for silent foraging, sperm competition would favor the evolution of leading-edge serrations in hirundines, which illustrates that totally different selection pressures favor homologous traits in two taxa.
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Hasegawa, M.. 2023-08-16. Sexually dimorphic leading-edge serrations evolved in silent swallows. https://doi.org/10.1101/2023.08.12.552953
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