The high-quality draft genome of peach (Prunus persica) identifies unique patterns of genetic diversity, domestication and genome evolution

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International Peach Genome Initiative, . | Verde, Ignazio | Abbott, Albert | Scalabrin, Simone | Jung, Sook | Shu, Shengqiang | Marroni, Fabio | Zhebentyayeva, Tatyana | Dettori, Maria Teresa | Grimwood, Jane | Cattonaro, Federica | Zuccolo, Andrea | Rossini, Laura | Jenkins, Jerry | Vendramin, Elisa | Meisel, Lee A | Decroocq, Véronique | Sosinski, Bryon | Prochnik, Simon | Mitros, Therese | Policriti, Alberto | Cipriani, Guido | Dondini, Luca | Ficklin, Stephen | Goodstein, David M | Xuan, Pengfei | del Fabbro, Cristian | Aramini, Valeria | Copetti, Dario | Gonzalez, Susana | Horner, David S | Falchi, Rachele | Lucas, Susan | Mica, Erica | Maldonado, Jonathan | Lazzari, Barbara | Bielenberg, Douglas | Pirona, Raul | Miculan, Mara | Barakat, Abdelali | Testolin, Raffaele | Stella, Alessandra | Tartarini, Stefano | Tonutti, Pietro | Arus, Pere | Orellana, Ariel | Wells, Christina | Main, Dorrie | Vizzotto, Giannina | Silva, Herman | Salamini, Francesco | Schmutz, Jeremy | Morgante, Michele | Rokhsar, Daniel S

Edité par CCSD ; Nature Publishing Group -

International audience. Rosaceae is the most important fruit-producing clade, and its key commercially relevant genera (Fragaria, Rosa, Rubus and Prunus) show broadly diverse growth habits, fruit types and compact diploid genomes. Peach, a diploid Prunus species, is one of the best genetically characterized deciduous trees. Here we describe the high-quality genome sequence of peach obtained from a completely homozygous genotype. We obtained a complete chromosome-scale assembly using Sanger whole-genome shotgun methods. We predicted 27,852 protein-coding genes, as well as noncoding RNAs. We investigated the path of peach domestication through whole-genome resequencing of 14 Prunus accessions. The analyses suggest major genetic bottlenecks that have substantially shaped peach genome diversity. Furthermore, comparative analyses showed that peach has not undergone recent whole-genome duplication, and even though the ancestral triplicated blocks in peach are fragmentary compared to those in grape, all seven paleosets of paralogs from the putative paleoancestor are detectable.

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