Graduate School of Integrated Sciences for Life, Hiroshima University, Higashi-Hiroshima, Hiroshima, Japan.
Kazusa DNA Research Institute, Kisarazu, Chiba, Japan.
Commun Biol. 2021 Oct 7;4(1):1167. doi: 10.1038/s42003-021-02704-y.
Chrysanthemums are one of the most industrially important cut flowers worldwide. However, their segmental allopolyploidy and self-incompatibility have prevented the application of genetic analysis and modern breeding strategies. We thus developed a model strain, Gojo-0 (Chrysanthemum seticuspe), which is a diploid and self-compatible pure line. Here, we present the 3.05 Gb chromosome-level reference genome sequence, which covered 97% of the C. seticuspe genome. The genome contained more than 80% interspersed repeats, of which retrotransposons accounted for 72%. We identified recent segmental duplication and retrotransposon expansion in C. seticuspe, contributing to arelatively large genome size. Furthermore, we identified a retrotransposon family, SbdRT, which was enriched in gene-dense genome regions and had experienced a very recent transposition burst. We also demonstrated that the chromosome-level genome sequence facilitates positional cloning in C. seticuspe. The genome sequence obtained here can greatly contribute as a reference for chrysanthemum in front-line breeding including genome editing.
菊花是全球最重要的切花之一。然而,其片段异源多倍体和自交不亲和性阻碍了遗传分析和现代育种策略的应用。因此,我们开发了一个模型菌株,Gojo-0(Chrysanthemum seticuspe),它是一个二倍体且自交亲和的纯系。在这里,我们呈现了 3.05Gb 染色体水平的参考基因组序列,它覆盖了 C. seticuspe 基因组的 97%。该基因组包含超过 80%的分散重复序列,其中反转录转座子占 72%。我们鉴定了 C. seticuspe 中的近期片段重复和反转座子扩张,这导致了相对较大的基因组大小。此外,我们鉴定了一个反转座子家族 SbdRT,它在基因密集型基因组区域富集,并经历了最近的转座爆发。我们还证明了染色体水平的基因组序列有助于 C. seticuspe 中的定位克隆。获得的基因组序列可以极大地促进包括基因组编辑在内的菊花前沿育种中的应用。