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October 15, 2025Molecular Ecology2 citationsOpen Access

Repeatable Genomic Outcomes Along the Speciation Continuum: Insights From Pine Hybrid Zones (Genus Pinus)

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BŁBartosz ŁabiszakSSSebastian SzczepańskiWWWitold Wachowiak

Key Points

  • Hybridization processes display evidence of repeatability in pine species across environments, highlighting deterministic patterns.
  • Genome-wide SNP analysis of over 1300 individuals indicates significant introgression toward P. mugo ancestry across hybrid zones.
  • The study identified local environmental selection affecting hybrid diversity and phenotype, emphasizing ecological impacts.
  • Findings contribute to the understanding of taxonomic classification within the Pinus mugo complex and inform conservation strategies.

Abstract

ABSTRACT Hybridization is a widespread evolutionary process and a key source of evolutionary novelty. Despite intensive study, the extent to which hybridization is deterministic and repeatable, particularly in recurrent contact events involving the same species under varying ecological conditions, remains unclear. Here, we investigated three replicated contact zones between Scots pine ( Pinus sylvestris ) and dwarf mountain pine ( Pinus mugo ) in Central Europe: two occurring in peatland habitats and one in a contrasting sandstone outcrop. Using genome‐wide SNP genotyping of over 1300 individuals, we analysed genomic structure, diversity, and ancestry patterns across these zones. All sites revealed pervasive hybridization, dominated by later‐generation hybrids and a notable scarcity of pure P. mugo . Across environments, hybrid populations exhibited strikingly consistent genomic compositions, with asymmetric introgression strongly biased toward P. mugo ancestry, suggesting that hybrid genome structure may follow predictable patterns under similar ecological conditions and could be shaped by cytonuclear incompatibilities. Nonetheless, we also detected site‐specific differences in hybrid diversity and phenotype, highlighting the influence of local environmental selection on shared hybrid genomic backgrounds. We provide genomic evidence that Pinus uliginosa , a morphologically distinct peat bog pine traditionally regarded as a relict and endangered species is instead a partially stabilised hybrid lineage. Its genome reflects incomplete hybridization and ecological filtering, yet it lacks sufficient genetic divergence to be recognised as a distinct species. Together, these results provide evidence for the repeatability of hybridization processes, which result in the formation of phenotypes reflecting a species continuum subjected to strong environmental pressures. The findings support the simplification of taxonomic nomenclature within the Pinus mugo complex, informing adaptive conservation strategies and the genetic management of hybrid lineages.

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Cite This Study

Łabiszak et al. (2025) studied this question.

synapsesocial.com/papers/68f02c7d616531447b5f959chttps://doi.org/10.1111/mec.70137
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