A chromosome-scale assembly reveals chromosomal aberrations and exchanges generating genetic diversity in Coffea arabica germplasm - INRAE - Institut national de recherche pour l’agriculture, l’alimentation et l’environnement Accéder directement au contenu
Article Dans Une Revue Nature Communications Année : 2024

A chromosome-scale assembly reveals chromosomal aberrations and exchanges generating genetic diversity in Coffea arabica germplasm

Simone Scalabrin
Davide Scaglione
Luciano Navarini
Gloria Pellegrino
  • Fonction : Auteur
Jorge Carlos Berny Mier y Teran
Mario Cerutti
  • Fonction : Auteur
Gabriele Di Gaspero

Résumé

In order to better understand the mechanisms generating genetic diversity in the recent allotetraploid species Coffea arabica, here we present a chromosome-level assembly obtained with long read technology. Two genomic compartments with different structural and functional properties are identified in the two homoeologous genomes. The resequencing data from a large set of accessions reveals low intraspecific diversity in the center of origin of the species. Across a limited number of genomic regions, diversity increases in some cultivated genotypes to levels similar to those observed within one of the progenitor species, Coffea canephora, presumably as a consequence of introgressions deriving from the so-called Timor hybrid. It also reveals that, in addition to few, early-occurring exchanges between homoeologous chromosomes, there are numerous recent chromosomal aberrations including aneuploidies, deletions, duplications and exchanges. These events are still polymorphic in the germplasm and could represent a fundamental source of genetic variation in such a lowly variable species.
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Licence : CC BY - Paternité

Dates et versions

hal-04552113 , version 1 (19-04-2024)

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Paternité

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Simone Scalabrin, Gabriele Magris, Mario Liva, Nicola Vitulo, Michele Vidotto, et al.. A chromosome-scale assembly reveals chromosomal aberrations and exchanges generating genetic diversity in Coffea arabica germplasm. Nature Communications, 2024, 15, pp.463. ⟨10.1038/s41467-023-44449-8⟩. ⟨hal-04552113⟩
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