Local Trade‐Offs Shape Flower Size Evolution Across Arabidopsis thaliana Distribution

The remarkable variation in floral form and size is thought to have driven the evolutionary radiation of angiosperms and has traditionally been attributed to pollinator-mediated selection on floral displays, yet emerging evidence indicates that abiotic environmental factors can also generate and filter variation in flower size. Here, we investigate the geographic variation in reproductive organ growth in the self-fertilising species Arabidopsis thaliana, where the loss of pollinator dependence is predicted to favour reduced floral investment through resource reallocation. We find extensive variation in flower size underpinned by a polygenic architecture, in which derived alleles both increase or decrease petal size and show signatures of positive selection. Nevertheless, the evolutionary direction of flower size differs across geographic regions, reflecting environmentally mediated shifts in the relationship between flower size and seed production. Purifying selection favours small flowers at the climatic margins of the species, but is relaxed in more suitable habitats allowing the emergence and persistence of both small and large-flower variants. This biogeographic pattern extends to other life-history traits, highlighting how environmental heterogeneity and constraints shape evolutionary trajectories and maintain phenotypic diversity in selfing lineages.

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Publication Details

Journal
Molecular Ecology
Published
2026-08-28
DOI
https://doi.org/10.1111/mec.70525
Primary Topic
Plant and animal studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Local Trade‐Offs Shape Flower Size Evolution Across Arabidopsis thaliana Distribution

Kévin Sartori, Aurélien Estarague, Adrien Sicard, Jesse R. Lasky et al.
Molecular Ecology
Plant and animal studies
article

Local Trade‐Offs Shape Flower Size Evolution Across Arabidopsis thaliana Distribution

Kévin Sartori, Aurélien Estarague, Adrien Sicard, Jesse R. Lasky, M. Hossain, Cyrille Violle, Elza Gaignon, Pierre Moulin, Clàudia F. Mestre
article en

Abstract

The remarkable variation in floral form and size is thought to have driven the evolutionary radiation of angiosperms and has traditionally been attributed to pollinator-mediated selection on floral displays, yet emerging evidence indicates that abiotic environmental factors can also generate and filter variation in flower size. Here, we investigate the geographic variation in reproductive organ growth in the self-fertilising species Arabidopsis thaliana, where the loss of pollinator dependence is predicted to favour reduced floral investment through resource reallocation. We find extensive variation in flower size underpinned by a polygenic architecture, in which derived alleles both increase or decrease petal size and show signatures of positive selection. Nevertheless, the evolutionary direction of flower size differs across geographic regions, reflecting environmentally mediated shifts in the relationship between flower size and seed production. Purifying selection favours small flowers at the climatic margins of the species, but is relaxed in more suitable habitats allowing the emergence and persistence of both small and large-flower variants. This biogeographic pattern extends to other life-history traits, highlighting how environmental heterogeneity and constraints shape evolutionary trajectories and maintain phenotypic diversity in selfing lineages.

Molecular EcologyVol. 35(17)
Centre National de la Recherche Scientifique (FR), Pennsylvania State University (US), École Pratique des Hautes Études (FR), Université de Montpellier (FR), Institut Agro Montpellier (FR), Swedish University of Agricultural Sciences (SE), Institut National de Recherche pour l'Agriculture, l'Alimentation et l'Environnement (FR), Centre d'Écologie Fonctionnelle et Évolutive (FR), Laboratoire d'Ecophysiologie des Plantes sous Stress environnementaux (FR), Institut de Recherche pour le Développement (FR)
European Commission, Novo Nordisk, Vetenskapsrådet, Novo Nordisk Fonden, National Institutes of Health, European Education and Culture Executive Agency, Education, Audiovisual and Culture Executive Agency
Openalex Percentile: Top 100%
Plant and animal studies
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