Publication Details

Category Data Publication
DOI 10.5281/zenodo.17945289
Licence creative commons licence
Title (Primary) Testing species boundaries in Polylepis [Dataset]
Author Olivar, J.E.C.; Lehnert, M.; Durka, W. ORCID logo ; Michalski, S.; Ritz, C.M.; Ebersbach, J.; Muellner-Riehl, A.N.; Segovia-Salcedo, C.; Acosta-Villamarín, S.; Romoleroux, K.; Muriel Mera, E.P.; Trujillo, E.J.; Gareca, E.E.; Fernández, M.; Mercado, M.; Jimenez Rojas, A.; Arrazola, S.; Hensen, I.; Kessler, M.
Source Titel Zenodo
Year 2025
Department BZF
Language englisch
Topic T5 Future Landscapes
Abstract Species delimitation in the South American genus Polylepis is notoriously challenging due to high morphological similarity and phenotypic plasticity, likely driven by hybridization and gene flow. Previous phylogenetic studies suggested that genetic structure aligns more strongly with geography than with taxonomy, questioning existing species concepts and hampering conservation efforts. We used double-digest RAD sequencing (ddRADseq) to generate genome-wide SNP data for 11 Polylepis species sampled across multiple localities in Bolivia and Ecuador. Population genetic analyses, phylogenetic inference, and network approaches were combined to assess whether genetic structure aligns more closely with taxonomy or geography. Morphologically defined species formed largely cohesive genetic lineages across regions, with species identity explaining substantially more genetic variation than locality. While localized admixture and reticulation were detected among closely related taxa, widespread species showed strong genetic cohesion and clear separation from congeners. Our results indicate that the sampled Polylepis species from Bolivia and Ecuador maintain distinct genetic identities despite localized signals consistent with gene flow. This genome-wide support for current taxonomy highlights Polylepis as a valuable model for studying speciation under gene flow and indicates that multiple geographic sampling will be essential in reconstructing a robust phylogeny of the genus, with important implications for conservation planning in Andean montane forests.
linked UFZ text publications
Olivar, J.E.C., Lehnert, M., Durka, W., Michalski, S., Ritz, C.M., Ebersbach, J., Muellner-Riehl, A.N., Segovia-Salcedo, C., Acosta-Villamarín, S., Romoleroux, K., Muriel Mera, E.P., Trujillo, E.J., Gareca, E.E., Fernández, M., Mercado, M., Jimenez Rojas, A., Arrazola, S., Hensen, I., Kessler, M. (2025):
Testing species boundaries in Polylepis [Dataset]
Zenodo
10.5281/zenodo.17945289