A Phased, Chromosome-scale Genome for Malus domestica 'WA 38'
Zhang, H.; Eaker, A.; Ko, I.; Haney, S.; Khuu, N.; Ryan, K.; Appleby, A.; Hoffmann, B.; Landis, H.; Pierro, K.; Willsea, N.; Hargarten, H.; Yocca, A.; Harkess, A.; Honaas, L.; Ficklin, S.
Show abstract
Genome sequencing for agriculturally important Rosaceous crops has made rapid progress both in completeness and annotation quality. Whole genome sequence and annotation gives breeders, researchers, and growers information about cultivar specific traits such as fruit quality, disease resistance, and informs strategies to enhance postharvest storage. Here we present a haplotype-phased, chromosomal level genome of Malus domestica, WA 38, a new apple cultivar released to market in 2017 as Cosmic Crisp (R). Using both short and long read sequencing data with a k-mer based approach, chromosomes originating from each parent were assembled and segregated. This is the first pome fruit genome fully phased into parental haplotypes in which chromosomes from each parent are identified and separated into their unique, respective haplomes. The two haplome assemblies, Honeycrisp originated HapA and Enterprise originated HapB, are about 650 Megabases each, and both have a BUSCO score of 98.7% complete. A total of 53,028 and 54,235 genes were annotated from HapA and HapB, respectively. Additionally, we provide genome-scale comparisons to Gala, Honeycrisp, and other relevant cultivars highlighting major differences in genome structure and gene family circumscription. This assembly and annotation was done in collaboration with the American Campus Tree Genomes project that includes WA 38 (Washington State University), dAnjou pear (Auburn University), and many more. To ensure transparency, reproducibility, and applicability for any genome project, our genome assembly and annotation workflow is recorded in detail and shared under a public GitLab repository. All software is containerized, offering a simple implementation of the workflow.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Diploid chromosome-scale assembly of the Muscadinia rotundifolia genome supports chromosome fusion and disease resistance gene expansion during Vitis and Muscadinia divergence 97%
- Reference genome for the highly transformable Setaria viridis cultivar ME034V 97%
- De novo whole-genome assembly of Chrysanthemum makinoi, a key wild ancestor to hexaploid Chrysanthemum 97%
Similar papers in this journal
- Deciphering octoploid strawberry evolution with serial LTR similarity matrices for subgenome partition 96%
- Telomere-to-telomere, gap-free genome of mung beans (Vigna radiata) provides insights into domestication under structural variation 96%
- Mapping the genomic landscape of peach and almond with PrunusMap 95%
Similar papers in this journal
- A Solanum lycopersicoides reference genome facilitates biological discovery in tomato 97%
- Genome and transcriptome architecture of allopolyploid okra (Abelmoschus esculentus) 96%
- A gap-free tomato genome built from complementary PacBio and Nanopore long DNA sequences reveals extensive linkage drag during breeding 96%
Similar papers in this journal
- A view of the pan-genome of domesticated cowpea (Vigna unguiculata Walp.) 97%
- Chromosome-level haplotype-resolved genome assembly provides insights into the highly heterozygous genome of Italian ryegrass (Lolium multiflorum Lam.) 96%
- Potato dihaploids uncover diverse alleles to facilitate diploid potato breeding 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.