The genetic structure of Arabidopsis thaliana in the south-western Mediterranean range reveals a shared history between North Africa and southern Europe

  1. Brennan, A.C. 2
  2. Méndez-Vigo, B. 1
  3. Haddioui, A. 3
  4. Martínez-Zapater, J.M. 4
  5. Picó, F.X. 2
  6. Alonso-Blanco, C. 1
  1. 1 Centro Nacional de Biotecnología
    info

    Centro Nacional de Biotecnología

    Madrid, España

    ROR https://ror.org/015w4v032

  2. 2 Estación Biológica de Doñana
    info

    Estación Biológica de Doñana

    Sevilla, España

    ROR https://ror.org/006gw6z14

  3. 3 Université Sultan Moulay Slimane
    info

    Université Sultan Moulay Slimane

    Beni Melal, Marruecos

    ROR https://ror.org/02m8tb249

  4. 4 Instituto de Ciencias de la Vid y del Vino
    info

    Instituto de Ciencias de la Vid y del Vino

    Logroño, España

    ROR https://ror.org/01rm2sw78

Revue:
BMC Plant Biology

ISSN: 1471-2229

Année de publication: 2014

Volumen: 14

Número: 1

Pages: 1-14

Type: Article

DOI: 10.1186/1471-2229-14-17 SCOPUS: 2-s2.0-84892406659 WoS: WOS:000330075200001 GOOGLE SCHOLAR lock_openAccès ouvert editor

D'autres publications dans: BMC Plant Biology

Dépôt institutionnel: lock_openAccès ouvert Editor

Résumé

Background: Deciphering the genetic structure of Arabidopsis thaliana diversity across its geographic range provides the bases for elucidating the demographic history of this model plant. Despite the unique A. thaliana genomic resources currently available, its history in North Africa, the extreme southern limit in the biodiversity hotspot of the Mediterranean Basin, remains virtually unknown. Results: To approach A. thaliana evolutionary history in North Africa, we have analysed the genetic diversity and structure of 151 individuals collected from 20 populations distributed across Morocco. Genotyping of 249 genome-wide SNPs indicated that Morocco contains substantially lower diversity than most analyzed world regions. However, IBD, STRUCTURE and PCA clustering analyses showed that genetic variation is strongly geographically structured. We also determined the genetic relationships between Morocco and the closest European region, the Iberian Peninsula, by analyses of 201 populations from both regions genotyped with the same SNPs. These analyses detected four genetic groups, but all Moroccan accessions belonged to a common Iberian/Moroccan cluster that appeared highly differentiated from the remaining groups. Thus, we identified a genetic lineage with an isolated demographic history in the south-western Mediterranean region. The existence of this lineage was further supported by the study of several flowering genes and traits, which also found Moroccan accessions similar to the same Iberian group. Nevertheless, genetic diversity for neutral SNPs and flowering genes was higher in Moroccan than in Iberian populations of this lineage. Furthermore, we analyzed the genetic relationships between Morocco and other world regions by joint analyses of a worldwide collection of 337 accessions, which detected an additional weak relationship between North Africa and Asia. Conclusions: The patterns of genetic diversity and structure of A. thaliana in Morocco show that North Africa is part of the species native range and support the occurrence of a glacial refugium in the Atlas Mountains. In addition, the identification of a genetic lineage specific of Morocco and the Iberian Peninsula indicates that the Strait of Gibraltar has been an A. thaliana migration route between Europe and Africa. Finally, the genetic relationship between Morocco and Asia suggests another migration route connecting north-western Africa and Asia. © 2014 Brennan et al.; licensee BioMed Central Ltd.