Evaluating three alternative scenarios for the origin of a disjunct Arctium tomentosum population in the Pyrenees

Background Disjunctions in species distributions offer natural experiments for investigating the mechanisms underlying distributional breaks, such as range contraction, long-distance pollen transport, or long-distance seed dispersal. Here, we document and characterise a floristic novelty in the Pyrenean and Iberian regions, and use it as a case study to investigate the processes underlying disjunct species distributions. Our analysis focuses on Arctium L. (burdocks), a genus native to Eurasia comprising several cosmopolitan weedy species. It is characterised by hooked capitula that facilitate epizoochorous dispersal. Methods To clarify the taxonomic identity of a previously undocumented Pyrenean population resembling A. tomentosum , we adopted an integrative approach, combining distribution information, morphology, genome size, repetitive DNA analysis and chloroplast data across the four known European species. Additionally, we conducted a comparative study of functional capitulum traits, predispersal fruit predation, and associated entomofauna for the newly discovered population and nearby A. minus populations. Results The discovered population constitutes a floristic novelty for the region and is identified as A. tomentosum , exhibiting signatures of past introgression from A. minus , as indicated by cytonuclear discordance. We evaluated three alternative scenarios to explain its origin: (i) persistence as a relict from a previously wider distribution, (ii) long-distance pollination by migrating insects, and (iii) long-distance seed dispersal from an A. tomentosum population with a history of past introgression. Of these, only the third is consistent with the available evidence. These results highlight the complexity of interpreting disjunct species distributions and underscore the value of integrative approaches for resolving population identity, origin, dispersal, and persistence across environments.

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Publication Details

Journal
PeerJ
Published
2026-09-07
DOI
https://doi.org/10.7717/peerj.21692
Primary Topic
Bryophyte Studies and Records
Type
article
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article

Evaluating three alternative scenarios for the origin of a disjunct Arctium tomentosum population in the Pyrenees

Luis Palazzesi, Jaume Pellicer, Teresa Garnatje, Iván Pérez-Lorenzo et al.
PeerJ
Bryophyte Studies and Records
article

Evaluating three alternative scenarios for the origin of a disjunct Arctium tomentosum population in the Pyrenees

Luis Palazzesi, Jaume Pellicer, Teresa Garnatje, Iván Pérez-Lorenzo, Leonardo Platania, Anabela Cardoso, Pol Fernández-Mató, Oriane Hidalgo, Pere Barnola Echenique, Miquel Àngel Marcé Sallés
article en

Abstract

Background Disjunctions in species distributions offer natural experiments for investigating the mechanisms underlying distributional breaks, such as range contraction, long-distance pollen transport, or long-distance seed dispersal. Here, we document and characterise a floristic novelty in the Pyrenean and Iberian regions, and use it as a case study to investigate the processes underlying disjunct species distributions. Our analysis focuses on Arctium L. (burdocks), a genus native to Eurasia comprising several cosmopolitan weedy species. It is characterised by hooked capitula that facilitate epizoochorous dispersal. Methods To clarify the taxonomic identity of a previously undocumented Pyrenean population resembling A. tomentosum , we adopted an integrative approach, combining distribution information, morphology, genome size, repetitive DNA analysis and chloroplast data across the four known European species. Additionally, we conducted a comparative study of functional capitulum traits, predispersal fruit predation, and associated entomofauna for the newly discovered population and nearby A. minus populations. Results The discovered population constitutes a floristic novelty for the region and is identified as A. tomentosum , exhibiting signatures of past introgression from A. minus , as indicated by cytonuclear discordance. We evaluated three alternative scenarios to explain its origin: (i) persistence as a relict from a previously wider distribution, (ii) long-distance pollination by migrating insects, and (iii) long-distance seed dispersal from an A. tomentosum population with a history of past introgression. Of these, only the third is consistent with the available evidence. These results highlight the complexity of interpreting disjunct species distributions and underscore the value of integrative approaches for resolving population identity, origin, dispersal, and persistence across environments.

PeerJVol. 14
Royal Botanic Gardens, Kew (GB), Bernardino Rivadavia Natural Sciences Museum (AR), Institut Botànic de Barcelona (ES), Universitat de Barcelona (ES)
Life in Land
Openalex Percentile: Top 7%
Bryophyte Studies and Records
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