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An angiosperm-wide perspective on reproductive strategies and floral traits

  • Andrew J. Helmstetter
  • , Marcos Méndez
  • , Jürg Schönenberger
  • , Concetta Burgarella
  • , Bruce Anderson
  • , Maria von Balthazar
  • , Sylvain Billiard
  • , Hugo de Boer
  • , Johanne Cros
  • , Pierre Alexandre Delecroix
  • , Mathilde Dufay
  • , John R. Pannell
  • , Dessislava Savova Bianchi
  • , Daniel J. Schoen
  • , Mario Vallejo-Marin
  • , Rosana Zenil-Ferguson
  • , Hervé Sauquet
  • , Sylvain Glémin
  • , Jos Käfer

Producción científica: Articlerevisión exhaustiva

1 Cita (Scopus)

Resumen

Flowering plants have many modes of sexual reproduction, notably varying from selfing to outcrossing, and from bisexual flowers to individuals with separate sexes (dioecy). These reproductive modes are associated with floral and life-history traits that have evolved together, making it difficult to interpret correlations between traits. We analysed variation in 21 traits related to flowers, pollination, mating, sexual systems and life history from 361 species representative of flowering plant diversity. Outcrossing was mainly found among long-lived, large-stature plants, but hermaphroditic outcrossers and dioecious species appeared as largely nonoverlapping strategies in the trait space. Level of floral investment was the main difference between these strategies, with dioecious species having generally smaller, less rewarding flowers, a pattern that also occurred in biotically pollinated species. This multi-trait study shows that pollination can be achieved in many, often contrasting, ways. Despite extensive variation in reproductive traits, dioecy stands out as being linked to floral traits primarily, while correlations with lifespan and dispersal traits appear spurious. We provide a conceptual framework based on lifespan, floral investment and sexual separation that can be used to integrate pollination, reproduction and plant growth in future research on plant evolution and ecology.

Idioma originalEnglish
Páginas (desde-hasta)1200-1216
Número de páginas17
PublicaciónNew Phytologist
Volumen250
N.º2
DOI
EstadoPublished - abr 2026

Nota bibliográfica

Publisher Copyright:
© 2026 The Author(s). New Phytologist © 2026 New Phytologist Foundation.

Financiación

This research was supported by the Fondation pour la Recherche sur la Biodiversité (FRB) through the CESAB project ‘DiveRS’; the FRB, Office Français de la Biodiversité and Ministère de Transition Ecologique project ‘IndicatoRS’ and by the ANR project ‘FloweRS’ (ANR‐23‐CE02‐0003). We thank the DiveRS members Sally Otto and Denis Roze for constructive discussions and feedback on the manuscript. We thank Nicolas Casajus, Nicolas Loiseau and Marion Chartier for advice on data analyses, Solenn Sarton for contributing data and Maud Calmet for the organization of the workshops of the DiveRS group. We thank the University of Vienna for hosting the PROTEUS database and eFLOWER server. We thank Susanne Renner and two anonymous reviewers for comments that helped to improve the manuscript. This research was supported by the Fondation pour la Recherche sur la Biodiversité (FRB) through the CESAB project ‘DiveRS’; the FRB, Office Français de la Biodiversité and Ministère de Transition Ecologique project ‘IndicatoRS’ and by the ANR project ‘FloweRS’ (ANR-23-CE02-0003). We thank the DiveRS members Sally Otto and Denis Roze for constructive discussions and feedback on the manuscript. We thank Nicolas Casajus, Nicolas Loiseau and Marion Chartier for advice on data analyses, Solenn Sarton for contributing data and Maud Calmet for the organization of the workshops of the DiveRS group. We thank the University of Vienna for hosting the PROTEUS database and eFLOWER server. We thank Susanne Renner and two anonymous reviewers for comments that helped to improve the manuscript.

FinanciadoresNúmero del financiador
Fondation pour la Recherche Médicale
Ministère de Transition Ecologique
Universität Wien
French ANRANR‐23‐CE02‐0003

    ASJC Scopus subject areas

    • Physiology
    • Plant Science

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