Climate drives community-wide divergence within species over a limited spatial scale: evidence from an oceanic island

Contributors
  • William E. Peterman
  • Paula Arribas
  • Dirk N. Karger
  • Antonia Salces-Castellano
  • Jairo Patiño
  • Brent C. Emerson
  • Kenneth Rijsdijk ORCID logo
  • Juan José Braojos-Ruiz
  • Pedro Oromí
  • Nadir Alvarez
  • Víctor García-Olivares
  • Carmelo Andújar
  • Heriberto López
  • Ioanna Manolopoulou
  • Antonio J. Pérez-Delgado
  • Marcelino del Arco-Aguilar
Publication date 2019
Description
Geographic isolation substantially contributes to species endemism on oceanic islands when speciation involves the colonisation of a new island. However, less is understood about the drivers of speciation within islands. What is lacking is a general understanding of the geographic scale of gene flow limitation within islands, and thus the geographic scale and drivers of geographical speciation within insular contexts. Using a community of beetle species, we show that when dispersal ability and climate tolerance are restricted, microclimatic variation over distances of only a few kilometres can maintain strong geographic isolation and drive incipient speciation. Further to this, we demonstrate congruent diversification with gene flow across species, mediated by Quaternary climate oscillations that have facilitated a dynamic of isolation and secondary contact. The unprecedented scale of parallel species responses to a common environmental driver for evolutionary change has profound consequences for understanding past and future species responses to climate variation.
Publisher DRYAD
Organisations
  • Faculty of Science (FNWI) - Institute for Biodiversity and Ecosystem Dynamics (IBED)
Document type Dataset
Related publication Climate drives community-wide divergence within species over a limited spatial scale: evidence from an oceanic island
DOI https://doi.org/10.5061/dryad.280gb5mkz
Other links http://datadryad.org/stash/dataset/doi:10.5061/dryad.280gb5mkz https://zenodo.org/record/4245065
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