DOI: 10.1098/rspb.2026.0934 ISSN: 0962-8452

Fitness effects of local seasonal adaptation depend on the timing of reproduction in a range-expanding butterfly

Martina Bovolenta, Mats Ittonen, Karl Gotthard

Abstract

Local seasonal adaptation across latitudes is ubiquitous, but its fitness consequences are rarely estimated in the field. Using a common-garden field experiment at the northern range margin of the butterfly Lasiommata megera, we show that fitness consequences of among-population genetic differences in photoperiodism for diapause (dormancy) timing depend on when during the adult flight period eggs are laid. Among the earliest individuals, those from southern populations were more likely to avert diapause than locally adapted northern range margin populations, and natural selection acted strongly against this non-diapause development. However, for all populations, virtually all eggs laid only one week later resulted in larvae that entered diapause, limiting overall among-population phenotypic differences in diapause induction. This demonstrates how evolved genetic differences for a reaction norm interact with phenology to influence the developmental decisions of larvae in the wild. Rapid local adaptation of photoperiodism has likely occurred through natural selection acting on a limited part of each autumn generation, implying a smooth fitness landscape where mildly maladapted populations can establish and subsequently evolve towards the local fitness peak. Thus, latitudinal differences in day length are unlikely to restrict climate change-driven range expansions.

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