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Autor
Alberti, Adriana 1 Alsos, Inger G 1 Boleda, Martí 1 Boyer, Frédéric 1 Coissac, Eric 1 Denoeud, France 1 Douzet, Rolland 1 Lavergne, Sébastien 1 Perrier, Christophe 1 Rome, Maxime 1 Roquet, Cristina 1 Smyčka, Jan 1 Thuiller, Wilfried 1 Valay, Jean-Gabriel 1 Wincker, Patrick 1 Zimmermann, Niklaus E 1 Šemberová, Kristýna 1
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Pracoviště
CNRS Lautaret Jardin du Lautaret Université ... 1 Center for Theoretical Study Charles Univers... 1 Czech Academy of Sciences Institute of Botan... 1 Department of Botany Faculty of Science Char... 1 Génomique Métabolique Genoscope Institut Fra... 1 Swiss Federal Research Institute WSL CH 8903... 1 Systematics and Evolution of Vascular Plants... 1 UiT The Arctic University of Norway The Arct... 1 Univ Grenoble Alpes Univ Savoie Mont Blanc C... 1 Université Paris Saclay CEA CNRS Institute f... 1
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Smyčka, Jan
Autor Smyčka, Jan ORCID Univ. Grenoble Alpes, Univ. Savoie Mont Blanc, CNRS, LECA, FR-38000, Grenoble, France. smyckaj@gmail.com Center for Theoretical Study, Charles University and the Academy of Sciences of the Czech Republic, CZ-11000, Prague, Czech Republic. smyckaj@gmail.com Department of Botany, Faculty of Science, Charles University, CZ-12801, Prague, Czech Republic. smyckaj@gmail.com
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Roquet, Cristina
Autor Roquet, Cristina ORCID Univ. Grenoble Alpes, Univ. Savoie Mont Blanc, CNRS, LECA, FR-38000, Grenoble, France Systematics and Evolution of Vascular Plants (UAB) - Associated Unit to CSIC, Departament de Biologia Animal, Biologia Vegetal i Ecologia, Facultat de Biociències, Universitat Autònoma de Barcelona, ES-08193, Bellaterra, Spain
- Boleda, Martí
- Alberti, Adriana
- Boyer, Frédéric
- Douzet, Rolland
- Perrier, Christophe
- Rome, Maxime
- Valay, Jean-Gabriel
- Denoeud, France
PubMed
35585056
PubMed Central
PMC9117672
DOI
10.1038/s41467-022-30394-5
PII: 10.1038/s41467-022-30394-5
Knihovny.cz E-zdroje
There is still limited consensus on the evolutionary history of species-rich temperate alpine floras due to a lack of comparable and high-quality phylogenetic data covering multiple plant lineages. Here we reconstructed when and how European alpine plant lineages diversified, i.e., the tempo and drivers of speciation events. We performed full-plastome phylogenomics and used multi-clade comparative models applied to six representative angiosperm lineages that have diversified in European mountains (212 sampled species, 251 ingroup species total). Diversification rates remained surprisingly steady for most clades, even during the Pleistocene, with speciation events being mostly driven by geographic divergence and bedrock shifts. Interestingly, we inferred asymmetrical historical migration rates from siliceous to calcareous bedrocks, and from higher to lower elevations, likely due to repeated shrinkage and expansion of high elevation habitats during the Pleistocene. This may have buffered climate-related extinctions, but prevented speciation along elevation gradients as often documented for tropical alpine floras.
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