European traditional tomatoes galore: a result of farmers’ selection of a few diversity-rich loci

Author:

Blanca Jose1,Pons Clara12,Montero-Pau Javier1ORCID,Sanchez-Matarredona David1,Ziarsolo Peio1,Fontanet Lilian3,Fisher Josef4,Plazas Mariola1,Casals Joan5,Rambla Jose Luis2,Riccini Alessandro6,Palombieri Samuela7,Ruggiero Alessandra7,Sulli Maria8,Grillo Stephania7,Kanellis Angelos9,Giuliano Giovanni8ORCID,Finkers Richard10ORCID,Cammareri Maria7,Grandillo Silvana7,Mazzucato Andrea6,Causse Mathilde3ORCID,Díez Maria José1,Prohens Jaime1,Zamir Dani4,Cañizares Joaquin1,Monforte Antonio Jose2ORCID,Granell Antonio2ORCID

Affiliation:

1. Instituto de Conservación y Mejora de la Agrodiversidad Valenciana (COMAV-UPV), Universitat Politècnica de València , València , Spain

2. Instituto de Biología Molecular y Celular de Plantas (IBMCP), Consejo Superior de Investigaciones Científicas (CSIC), Universitat Politècnica de València , València , Spain

3. INRAE, UR1052, Génétique et Amélioration des Fruits et Légumes, Centre de Recherche PACA , Domaine Saint Maurice, 67 Allée des Chênes, CS 60094, 84143 Montfavet , France

4. Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, The Hebrew University of Jerusalem , Rehovot , Israel

5. Department of Agri-Food Engineering and Biotechnology/Miquel Agustí Foundation, UPC-BarcelonaTech, Campus Baix Llobregat , Esteve Terrades 8, 08860 Castelldefels , Spain

6. Department of Agriculture and Forest Sciences (DAFNE), Università degli Studi della Tuscia , Viterbo , Italy

7. Institute of Biosciences and BioResources (IBBR), National Research Council of Italy (CNR), Via Università 133 , 80055 Portici , Italy

8. Italian National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA), Casaccia Research Centre , Rome , Italy

9. Group of Biotechnology of Pharmaceutical Plants, Laboratory of Pharmacognosy, Department of Pharmaceutical Sciences, Aristotle University of Thessaloniki , 54124 Thessaloniki , Greece

10. Plant Breeding, Wageningen University and Research , POB 386, 6700 AJ Wageningen , The Netherlands

Abstract

Abstract A comprehensive collection of 1254 tomato accessions, corresponding to European traditional and modern varieties, early domesticated varieties, and wild relatives, was analyzed by genotyping by sequencing. A continuous genetic gradient between the traditional and modern varieties was observed. European traditional tomatoes displayed very low genetic diversity, with only 298 polymorphic loci (95% threshold) out of 64 943 total variants. European traditional tomatoes could be classified into several genetic groups. Two main clusters consisting of Spanish and Italian accessions showed higher genetic diversity than the remaining varieties, suggesting that these regions might be independent secondary centers of diversity with a different history. Other varieties seem to be the result of a more recent complex pattern of migrations and hybridizations among the European regions. Several polymorphic loci were associated in a genome-wide association study with fruit morphological traits in the European traditional collection. The corresponding alleles were found to contribute to the distinctive phenotypic characteristic of the genetic varietal groups. The few highly polymorphic loci associated with morphological traits in an otherwise a low-diversity population suggests a history of balancing selection, in which tomato farmers likely maintained the morphological variation by inadvertently applying a high selective pressure within different varietal types.

Funder

TRADITOM

HARNESSTOM

Spanish Ministerio de Ciencia e Innovación

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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