The Frequency and Importance of Polyploidy in Tropical Rainforest Tree Radiations

UDC.coleccionInvestigación
UDC.departamentoBioloxía
UDC.endPage2114
UDC.grupoInvGrupo de Investigación en Bioloxía Evolutiva (GIBE)
UDC.institutoCentroCICA - Centro Interdisciplinar de Química e Bioloxía
UDC.issue4
UDC.journalTitleNew Phytologist
UDC.startPage2103
UDC.volume249
dc.contributor.authorSchley, Rowan
dc.contributor.authorPiñeiro Portela, Rosalía
dc.contributor.authorNicholls, James
dc.contributor.authorGaynor, Michelle L.
dc.contributor.authorLewis, Gwilym
dc.contributor.authorPezzini, Flávia Fonseca
dc.contributor.authorDexter, Kyle
dc.contributor.authorKidner, Catherine
dc.contributor.authorPennington, Toby
dc.contributor.authorTwyford, Alex
dc.date.accessioned2026-08-06T08:52:44Z
dc.date.available2026-08-06T08:52:44Z
dc.date.issued2025-11-23
dc.description.abstract[Abstract] The presence of more than two copies of the genome in an organism, termed ‘polyploidy’, is a crucial force in plant evolution, generating genetic, phenotypic and ecological diversity. [Correction added on 22 January 2026, after first online publication: the preceding sentence has been corrected.] The Amazonian tree flora is the most species-rich on Earth and largely arose as a result of rapid evolutionary radiations. While polyploidy is an important catalyst of rapid radiations, it remains poorly studied in tropical tree radiations. We examined ploidy variation across Inga (Fabaceae), a characteristic Amazonian tree radiation, using DNA-sequence data from 1305 loci for 189/282 Inga species. We then tested whether polyploid species experience more positive selection than diploids, particularly in loci underlying chemical defence against herbivory, which is a key ecological pressure affecting rainforest tree diversification. We show that tetraploidy occurs in 15% (n = 29) of the Inga species we studied, with several widespread species showing geographical ploidy variation, alongside minimal phylogenetic signal in ploidy which suggests recurrent polyploidisation. Interestingly, we found more loci under selection in polyploids than in diploids, most notably in chemical defence loci. Our results show that polyploidy has arisen independently in several Inga species, and that polyploidisation can lead to elevated selection in chemical defence, helping to shape ecological interactions and influence diversification in Inga.
dc.description.sponsorshipThis work was supported by a Natural Environment Research Council standard grant (grant number NE/V012258/1). Sequencing was funded partly by the Biotechnology and Biological Sciences Research Council, grant number BB/P022898/1. JN's work was funded by National Science Foundation Standard and Dimensions of Biodiversity grants, numbers DEB-0640630 and DEB-1135733. MLG was funded by an NSF Postdoctoral Research Fellowship in Biology (DBI-2410238). This project utilised equipment funded by the Wellcome Trust (Multi-User Equipment Grant award number 218247/Z/19/Z). The authors acknowledge the Research/Scientific Computing teams at The James Hutton Institute and NIAB for providing computational resources and technical support for the ‘UK's Crop Diversity Bioinformatics HPC’ (BBSRC grant BB/S019669/1), use of which has contributed to the results reported within this paper. The authors would like to thank Dr Colin Hughes for his help and the many useful comments that led to the development of this work. Many thanks to Karen Moore and Audrey Farbos for their superlative help with generating the data via the Exeter Sequencing Service
dc.description.sponsorshipReino Unido. Natural Environment Research Council; NE/V012258/1
dc.description.sponsorshipReino Unido. Biotechnology and Biological Sciences Research Council; BB/P022898/1
dc.description.sponsorshipEstados Unidos. National Science Foundation; DEB-0640630
dc.description.sponsorshipEstados Unidos. National Science Foundation; DEB-1135733
dc.description.sponsorshipEstados Unidos. National Science Foundation; DBI-2410238
dc.description.sponsorshipWellcome Trust; 218247/Z/19/Z
dc.description.sponsorshipReino Unido. Biotechnology and Biological Sciences Research Council; BB/S019669/1
dc.identifier.citationSchley, R.J., Piñeiro, R., Nicholls, J.A., Gaynor, M.L., Lewis, G.P., Fonseca Pezzini, F., Dexter, K.G., Kidner, C., Pennington, R.T. and Twyford, A.D. (2026), The frequency and importance of polyploidy in tropical rainforest tree radiations. New Phytol, 249: 2103-2114. https://doi.org/10.1111/nph.70764
dc.identifier.doi10.1111/nph.70764
dc.identifier.issn1469-8137
dc.identifier.issn0028-646X
dc.identifier.urihttps://hdl.handle.net/2183/49001
dc.language.isoeng
dc.publisherWiley
dc.relation.urihttps://doi.org/10.1111/nph.70764
dc.rightsAttribution 4.0 Internationalen
dc.rights.accessRightsopen access
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectAmazon
dc.subjectDiversification
dc.subjectFabaceae
dc.subjectPhylogenomics
dc.subjectRadiation
dc.subjectRainforest
dc.subjectSelection
dc.subjectWhole-genome duplication
dc.titleThe Frequency and Importance of Polyploidy in Tropical Rainforest Tree Radiations
dc.typejournal article
dc.type.hasVersionVoR
dspace.entity.typePublication
relation.isAuthorOfPublicationb40e65eb-5dcb-4cfb-b589-ba9d00c5bd0a
relation.isAuthorOfPublication.latestForDiscoveryb40e65eb-5dcb-4cfb-b589-ba9d00c5bd0a

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