<p>Our understanding of the emergence of mountain floras rests on our ability to infer how orogeny, landscape dynamics and climate change altered their evolutionary trajectories. Here we reconstruct the assembly of the diverse sky-island flora of the European Alps and test the impact of key geo-climatic events. We use a dated 5,231-species phylogeny, including 96% of the sky-island flora. The assembly of this flora occurred through the colonization of over a thousand distinct lineages, of which 46% speciated from their lowland or non-Alpine ancestor and 6% underwent in situ cladogenesis. The young ages of extant sky-island lineages show that their accumulation was decoupled from ancient geo-climatic events but accelerated throughout the Plio-Pleistocene. The sky-island vegetation therefore assembled through recent lineage turnover, which was triggered, rather than impeded, by Pleistocene glacial intensification. This perspective challenges previous assumptions and highlights the complex interplay of geo-climatic factors in shaping the intricate tapestry of alpine floras.</p>

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The late rise of sky-island vegetation in the European Alps

  • Lara M. Wootton,
  • Florian C. Boucher,
  • Charles Pouchon,
  • Cristina Roquet,
  • Eric Coissac,
  • Julien Renaud,
  • Inger G. Alsos,
  • Pierre G. Valla,
  • Laurent Husson,
  • Matthias Bernet,
  • Christophe Perrier,
  • Rolland Douzet,
  • Maxime Rome,
  • Jean-Gabriel Valay,
  • Adriana Alberti,
  • France Denoeud,
  • Niklaus E. Zimmermann,
  • Patrick Wincker,
  • Wilfried Thuiller,
  • Inger Greve Alsos,
  • Marie Kristine Føreid Merkel,
  • Youri Lammers,
  • Cristina Roquet,
  • Niklaus Zimmermann,
  • Martí Boleda,
  • Frédéric Boyer,
  • Anthony Hombiat,
  • Serge Aubert,
  • Bruno Bzeznik,
  • Ludovic Gielly,
  • Pierre Taberlet,
  • Delphine Rioux,
  • Céline Orvain,
  • Rafael O. Wüest,
  • Sonia Latzin,
  • John Spillmann,
  • Linda Feichtinger,
  • Jérémie Van Es,
  • Luc Garraud,
  • Jean-Charles Villaret,
  • Sylvain Abdulhak,
  • Véronique Bonnet,
  • Stéphanie Huc,
  • Noémie Fort,
  • Thomas Legland,
  • Thomas Sanz,
  • Gilles Pache,
  • Alexis Mikolajczak,
  • Virgile Noble,
  • Henri Michaud,
  • Cédric Dentant,
  • Pierre Salomez,
  • Richard Bonet,
  • Thierry Delahaye,
  • Marie-France Leccia,
  • Monique Perfus,
  • Stefan Eggenberg,
  • Adrian Möhl,
  • Andreas Gygax,
  • Lea Bona,
  • Lionel Sager,
  • Bogdan-Iuliu Hurdu,
  • Paul-Marian Szatmari,
  • Mihai Puşcaş,
  • Pavel Dan Turtureanu,
  • Jan Smyčka,
  • Patrik Mráz,
  • Kristýna Šemberova,
  • Michał Ronikier,
  • Marek Slovák,
  • Milan Valachovic,
  • Llorenç Sáez,
  • Jerome Chave,
  • Guillaume Besnard,
  • Heloïse Vanderpert,
  • Laure Barrabé,
  • Herve Vandrot,
  • Vanessa Hecquet,
  • Thomas Haervermans,
  • Myriam Gaudeul,
  • Sébastien Lavergne

摘要

Our understanding of the emergence of mountain floras rests on our ability to infer how orogeny, landscape dynamics and climate change altered their evolutionary trajectories. Here we reconstruct the assembly of the diverse sky-island flora of the European Alps and test the impact of key geo-climatic events. We use a dated 5,231-species phylogeny, including 96% of the sky-island flora. The assembly of this flora occurred through the colonization of over a thousand distinct lineages, of which 46% speciated from their lowland or non-Alpine ancestor and 6% underwent in situ cladogenesis. The young ages of extant sky-island lineages show that their accumulation was decoupled from ancient geo-climatic events but accelerated throughout the Plio-Pleistocene. The sky-island vegetation therefore assembled through recent lineage turnover, which was triggered, rather than impeded, by Pleistocene glacial intensification. This perspective challenges previous assumptions and highlights the complex interplay of geo-climatic factors in shaping the intricate tapestry of alpine floras.