AI Article Synopsis

  • - Deciduous forests in Europe were primarily found in small refuges during the cold Pleistocene periods, especially in southern and central regions, with significant refugia in the northwestern Balkan Peninsula.
  • - The study focused on the understorey species Euphorbia carniolica to understand historical forest dynamics, analyzing genetic and morphometric data across its entire range, revealing two main genetic groups linked to different refugia.
  • - Findings indicated that genetic separation between these groups began in the early Pleistocene, suggesting a broader historical distribution, and emphasized the late Pliocene origin of E. carniolica before the onset of colder periods in Eurasia.

Article Abstract

Deciduous forests form the dominant natural vegetation of Europe today, but were restricted to small refugia during Pleistocene cold stages, implying an evolutionary past shaped by recurrent range contractions and expansions. Cold-stage forest refugia were probably widespread in southern and central Europe, with the northwestern Balkan Peninsula being of particular importance. However, the actual number and location of deciduous forest refugia, as well as the connections between them, remain disputed. Here, we address the evolutionary dynamics of the deciduous forest understorey species Euphorbia carniolica as a proxy for past forest dynamics. To do so, we obtained genomic and morphometric data from populations representing the species' entire range, investigated phylogenetic position and intraspecific genetic variation, tested explicit demographic scenarios and applied species distribution models. Our data support two disjoint groups linked to separate refugia on the northwestern and central Balkan Peninsula. We find that genetic differentiation between groups started in the early Pleistocene via vicariance, suggesting a larger distribution in the past. Both refugia acted as sources for founder events to the southeastern Alps and the Carpathians; the latter were likely colonised before the last cold stage. In line with traditional views on the pre-Pleistocene origin of many southeastern European deciduous forest species, the origin of E. carniolica was dated to the late Pliocene. The fact that E. carniolica evolved at a time when a period of continuous forestation was ending in much of Eurasia provides an interesting biogeographical perspective on the past links between Eurasian deciduous forests and their biota.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10946815PMC
http://dx.doi.org/10.1111/mec.17102DOI Listing

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