A phased, chromosome-scale genome of 'Honeycrisp' apple ( Malus domestica )

The apple cultivar 'Honeycrisp' has superior fruit quality traits, cold hardiness, and disease resistance, making it a popular breeding parent. However, it suffers from several physiological disorders, production, and postharvest issues. Despite several available apple genome sequences, un...

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Veröffentlicht in:GigaByte (Hong Kong, China) China), 2022-09, Vol.2022, p.gigabyte69-15
Hauptverfasser: Khan, Awais, Carey, Sarah B, Serrano, Alicia, Zhang, Huiting, Hargarten, Heidi, Hale, Haley, Harkess, Alex, Honaas, Loren
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Sprache:eng
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Zusammenfassung:The apple cultivar 'Honeycrisp' has superior fruit quality traits, cold hardiness, and disease resistance, making it a popular breeding parent. However, it suffers from several physiological disorders, production, and postharvest issues. Despite several available apple genome sequences, understanding of the genetic mechanisms underlying cultivar-specific traits remains lacking. Here, we present a highly contiguous, fully phased, chromosome-level genome of 'Honeycrisp' apples, using PacBio HiFi, Omni-C, and Illumina sequencing platforms, with two assembled haplomes of 674 Mbp and 660 Mbp, and contig N50 values of 32.8 Mbp and 31.6 Mbp, respectively. Overall, 47,563 and 48,655 protein-coding genes were annotated from each haplome, capturing 96.8-97.4% complete BUSCOs in the eudicot database. Gene family analysis reveals most 'Honeycrisp' genes are assigned into orthogroups shared with other genomes, with 121 'Honeycrisp'-specific orthogroups. This resource is valuable for understanding the genetic basis of important traits in apples and related Rosaceae species to enhance breeding efforts.
ISSN:2709-4715
2709-4715
DOI:10.46471/gigabyte.69