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Shiitake, Hua Gu · 2025 · Research Support, Non U.S. Gov'T

Medium relevance

Nearly telomere-to-telomere genome assembly of the L. edodes diploid genome.

Lentinula edodes

Immune supportGut & microbiome
SpeciesShiitake, Hua Gu
JournalFungal genetics and biology: FG & B
Year2025

Key points

  • Lentinula edodes (shiitake mushroom) possesses substantial nutritional and medicinal value
  • This study reports a near-telomere-to-telomere assembly of the complete diploid genome of L. edodes strain XR1, a commercially important Japanese strain
  • The assembled diploid genome comprised 20 chromosomes (10 per haplotype), and significant inter-haplotype variation was observed
  • Additionally, we identified a novel Penelope-like retrotransposon-Coprina-1_LeEd-specifically localized to the telomeres
  • This study marks the first report of telomere elongation by the transposition of Coprina
  • Furthermore, this study establishes a foundation for further research on edible mushroom genetics and biotechnology

Metadata-grounded summary

Citation abstract

Lentinula edodes (shiitake mushroom) possesses substantial nutritional and medicinal value. Even though the genomes of several strains have been reported, some essential observations, including the exact chromosome number, still need validation. This study reports a near-telomere-to-telomere assembly of the complete diploid genome of L. edodes strain XR1, a commercially important Japanese strain. We employed the PacBio HiFi long-read sequencing technology combined with single-cell genotyping data and manual curation. The assembled diploid genome comprised 20 chromosomes (10 per haplotype), and significant inter-haplotype variation was observed. Additionally, we identified a novel Penelope-like retrotransposon-Coprina-1_LeEd-specifically localized to the telomeres. This study marks the first report of telomere elongation by the transposition of Coprina. Our findings provide a high-resolution genome resource for L. edodes, consequently elucidating its evolution, genomic structure, and breeding potential. Furthermore, this study establishes a foundation for further research on edible mushroom genetics and biotechnology.

Citation

Yoshitake K, Shirasawa K, Kojima KK, Asakawa S, Tanaka N, Kurokochi H (2025). Nearly telomere-to-telomere genome assembly of the L. edodes diploid genome. Fungal genetics and biology: FG & B https://doi.org/10.1016/j.fgb.2025.104005 PMID: 40414485

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