<i>Chromosome-scale assembly of the wild cereal relative Elymus sibiricus</i>
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<i>Elymus</i> species, belonging to Triticeae tribe, is a tertiary gene pool for improvement of major cereal crops. <i>Elymus sibiricus</i>, a tetraploid with StH genome, is a typical species in the genus <i>Elymus</i>, which is widely utilized as a high-quality perennial forage grass in template regions. In this study, we report the construction of a chromosome-scale reference assembly of <i>E. sibiricus</i> line Gaomu No. 1 based on PacBio HiFi reads and chromosome conformation capture. Subgenome St and H were well phased by assisting with kmer and subgenome-specific repetitive sequence. The total assembly size was 6.929 Gb with a contig N50 of 49.518 Mb. In total, 89,800 protein-coding genes were predicted. The repetitive sequences accounted for 82.49% of the genome in <i>E. sibiricus</i>. Comparative genome analysis confirmed a major species-specific 4H/6H reciprocal translocation in <i>E. sibiricus</i>. The <i>E. sibiricus</i> assembly will be much helpful to exploit genetic resource of StH species in genus <i>Elymus</i>, and provides an important tool for <i>E. sibiricus</i> domestication.



