Biologyarticle2026-09-23

Evidence of parental care as a newly identified reproductive isolating barrier

Open access5 citations

Abstract

). In the typical "common" stickleback ecotype, males provide care to their offspring by fanning with their pectoral fins and defending their nest. In contrast, a divergent "white" stickleback ecotype has evolutionarily lost care and disperses embryos into the surrounding environment. We examined how paternal care from common, white, and F1 hybrid fathers influenced offspring survival. We detected no intrinsic incompatibilities in embryos, but F1 hybrid fathers exhibited dysregulated parental care that coincided with decreased survival of parented offspring. The increased offspring mortality may be explained by further dysregulation of feeding and parenting circuitry, as F2 hybrids exhibited significantly higher rates of post-fertilization filial cannibalism than common or white fathers. Additionally, despite strong divergence in nesting-building and courtship behavior, F1 hybrids achieved mating success at a similar rate as male commons and whites, suggesting that prezygotic barriers against hybrids may be weak. The observed postzygotic isolation, and potentially weak prezygotic isolation in lab-based studies, suggest that hybridization is likely occurring at low rates in the wild. Population genetic analysis supported this, as low proportions of putative hybrids were detected in sympatric sites. Together, these results may help explain why genetic divergence between these phenotypically distinct ecotypes is low and provide evidence that dysregulated parental behavior can act as a newly discovered postzygotic reproductive isolating barrier.

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View paper (DOI)Open access versionOpenAlexJournal of Animal EcologyPublished 2026-09-23

Authors: Colby Behrens, Meghan F. Maciejewski, Alexandra X. Y. Sumarli, German Lagunas‐Robles, Kieran Samuk, Alison M. Bell

Institutions: University of Illinois Urbana-Champaign, University of California, Riverside, Indiana University Bloomington, Carl R. Woese Institute for Genomic Biology