Genomic, spatial and morphometric data for discrimination of four species in the Mediterranean Tamus clade of yams (Dioscorea, Dioscoreaceae)

Author:

Campos Miguel123,Kelley Emma1,Gravendeel Barbara45,Médail Frédéric6,Maarten Christenhusz J M1,Fay Michael F17,Catalán Pilar38,Leitch Ilia J1,Forest Félix1,Wilkin Paul1,Viruel Juan1ORCID

Affiliation:

1. Royal Botanic Gardens, Kew , Richmond TW9 3DS , UK

2. Department of Plant Biology and Ecology, University of Seville , 41012 , Spain

3. Universidad de Zaragoza-Escuela Politécnica Superior de Huesca , 22071, Huesca , Spain

4. Naturalis Biodiversity Center , Leiden 2333 CR , The Netherlands

5. Radboud Institute for Biological and Environmental Sciences , RIBES 6500 GL, Nijmegen , The Netherlands

6. Institut Méditerranéen de Biodiversité et d’Écologie marine et continentale (IMBE), Aix Marseille University, Avignon University, CNRS, IRD , Campus Aix, Technopôle de l’Environnement Arbois-Méditerranée, F-13545 Aix-en-Provence cedex 4 , France

7. School of Biological Sciences, University of Western Australia , Crawley, WA 6009 , Australia

8. Grupo de Bioquímica, Biofísica y Biología Computacional (BIFI, UNIZAR), Unidad Asociada al CSIC , Zaragoza 50018 , Spain

Abstract

AbstractBackground and AimsAmong the numerous pantropical species of the yam genus, Dioscorea, only a small group occurs in the Mediterranean basin, including two narrow Pyrenean endemics (Borderea clade) and two Mediterranean-wide species (D. communis and D. orientalis, Tamus clade). However, several currently unrecognized species and infraspecific taxa have been described in the Tamus clade due to significant morphological variation associated with D. communis. Our overarching aim was to investigate taxon delimitation in the Tamus clade using an integrative approach combining phylogenomic, spatial and morphological data.MethodsWe analysed 76 herbarium samples using Hyb-Seq genomic capture to sequence 260 low-copy nuclear genes and plastomes, together with morphometric and environmental modelling approaches.Key ResultsPhylogenomic reconstructions confirmed that the two previously accepted species of the Tamus clade, D. communis and D. orientalis, are monophyletic and form sister clades. Three subclades showing distinctive geographic patterns were identified within D. communis. These subclades were also identifiable from morphometric and climatic data, and introgression patterns were inferred between subclades in the eastern part of the distribution of D. communis.ConclusionsWe propose a taxonomy that maintains D. orientalis, endemic to the eastern Mediterranean region, and splits D. communis sensu lato into three species: D. edulis, endemic to Macaronesia (Canary Islands and Madeira); D. cretica, endemic to the eastern Mediterranean region; and D. communis sensu stricto, widespread across western and central Europe. Introgression inferred between D. communis s.s. and D. cretica is likely to be explained by their relatively recent speciation at the end of the Miocene, disjunct isolation in eastern and western Mediterranean glacial refugia and a subsequent westward recolonization of D. communis s.s. Our study shows that the use of integrated genomic, spatial and morphological approaches allows a more robust definition of species boundaries and the identification of species that previous systematic studies failed to uncover.

Funder

Marie Skłodowska-Curie Individual

European Social Fund

Spanish Aragón Government Bioflora

Publisher

Oxford University Press (OUP)

Subject

Plant Science

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