4.5 Article

A high-quality chromosome-level genome of wild Rosa rugosa

期刊

DNA RESEARCH
卷 28, 期 5, 页码 -

出版社

OXFORD UNIV PRESS
DOI: 10.1093/dnares/dsab017

关键词

Rosa rugosa; genome sequencing; Hi-C assembly; genome annotation; chromosome synteny

资金

  1. Shandong Agricultural Seeds Engineering Project [2019LZGC01802]
  2. National Natural Science Foundation of China [31870688]
  3. National Center for Forestry and Grassland Genetic Resources [NCFGGR-2020]

向作者/读者索取更多资源

Rosa rugosa, an important shrub with economic, ecological, and pharmaceutical value, had its genome sequenced using PacBio and Hi-C technologies. The assembled genome had a size of 407.1 Mb, with 98% of the sequences anchored to seven pseudochromosomes. Phylogenetic and synteny analysis revealed the evolutionary history and gene conservation between R. rugosa and other closely related species. The genome provides valuable resources for molecular-assisted breeding and horticultural genomics research.
Rosa rugosa is an important shrub with economic, ecological, and pharmaceutical value. A high-quality chromosome-scale genome for R. rugosa sequences was assembled using PacBio and Hi-C technologies. The final assembly genome sequences size was about 407.1 Mb, the contig N50 size was 2.85 Mb, and the scaffold N50 size was 56.6 Mb. More than 98% of the assembled genome sequences were anchored to seven pseudochromosomes (402.9Mb). The genome contained 37,512 protein-coding genes, with 37,016 genes (98.68%) that were functionally annotated, and 206.67 Mb (50.76%) of the assembled sequences are repetitive sequences. Phylogenetic analyses indicated that R. rugosa diverged from Rosa chinensis similar to 6.6 million years ago, and no lineage-specific whole-genome duplication event occurred after divergence from R. chinensis. Chromosome synteny analysis demonstrated highly conserved synteny between R. rugosa and R. chinensis, between R. rugosa and Prunus persica as well. Comparative genome and transcriptome analysis revealed genes related to colour, scent, and environment adaptation. The chromosome-level reference genome provides important genomic resources for molecular-assisted breeding and horticultural comparative genomics research.

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