Whole genome scanning of a Mediterranean basin hotspot collection provides new insights into olive tree biodiversity and biology

Author:

Bazakos Christos123ORCID,Alexiou Konstantinos G.45,Ramos‐Onsins Sebastián45,Koubouris Georgios6,Tourvas Nikolaos7,Xanthopoulou Aliki12,Mellidou Ifigeneia12ORCID,Moysiadis Theodoros18,Vourlaki Ioanna‐Theoni45,Metzidakis Ioannis6,Sergentani Chrysi6,Manolikaki Ioanna6,Michailidis Michail9,Pistikoudi Adamantia10,Polidoros Alexios10,Kostelenos George11,Aravanopoulos Filippos7,Molassiotis Athanassios9ORCID,Ganopoulos Ioannis12ORCID

Affiliation:

1. Institute of Plant Breeding and Genetic Resources Hellenic Agricultural Organization (ELGO) DIMITRA Thermi 57001 Thessaloniki Greece

2. Joint Laboratory of Horticulture Hellenic Agricultural Organization (ELGO) DIMITRA Thermi 57001 Thessaloniki Greece

3. Department of Comparative Development and Genetics Max Planck Institute for Plant Breeding Research Carl‐von‐Linné‐Weg 10 50829 Cologne Germany

4. Centre for Research in Agricultural Genomics CSIC‐IRTA‐UAB‐UB Campus UAB Barcelona Spain

5. Institut de Recerca i Tecnologia Agroalimentàries Barcelona Spain

6. Institute of Olive Tree, Subtropical Crops and Viticulture Hellenic Agricultural Organization (ELGO) DIMITRA Chania 73134 Greece

7. Laboratory of Forest Genetics, Faculty of Agriculture, Forestry and Natural Environment Aristotle University of Thessaloniki 54124 Thessaloniki Greece

8. Department of Computer Science, School of Sciences and Engineering University of Nicosia Nicosia 2417 Cyprus

9. Laboratory of Pomology, Department of Horticulture Aristotle University of Thessaloniki Thermi 57001 Thessaloniki Greece

10. Laboratory of Genetics and Plant Breeding, School of Agriculture Aristotle University of Thessaloniki 54124 Thessaloniki Greece

11. Kostelenos Olive Nurseries 18020 Poros‐Trizinias Greece

Abstract

SUMMARYOlive tree (Olea europaea L. subsp. europaea var. europaea) is one of the most important species of the Mediterranean region and one of the most ancient species domesticated. The availability of whole genome assemblies and annotations of olive tree cultivars and oleaster (O. europaea subsp. europaea var. sylvestris) has contributed to a better understanding of genetic and genomic differences between olive tree cultivars. However, compared to other plant species there is still a lack of genomic resources for olive tree populations that span the entire Mediterranean region. In the present study we developed the most complete genomic variation map and the most comprehensive catalog/resource of molecular variation to date for 89 olive tree genotypes originating from the entire Mediterranean basin, revealing the genetic diversity of this commercially significant crop tree and explaining the divergence/similarity among different variants. Additionally, the monumental ancient tree ‘Throuba Naxos’ was studied to characterize the potential origin or routes of olive tree domestication. Several candidate genes known to be associated with key agronomic traits, including olive oil quality and fruit yield, were uncovered by a selective sweep scan to be under selection pressure on all olive tree chromosomes. To further exploit the genomic and phenotypic resources obtained from the current work, genome‐wide association analyses were performed for 23 morphological and two agronomic traits. Significant associations were detected for eight traits that provide valuable candidates for fruit tree breeding and for deeper understanding of olive tree biology.

Funder

General Secretariat for Research and Technology

Publisher

Wiley

Subject

Cell Biology,Plant Science,Genetics

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