世界初の完全なソングバードゲノムを解読(First complete songbird genome reveals hidden biology)

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2026-08-06 ロックフェラー大学

ロックフェラー大学を中心とする国際共同研究チームは、世界で初めて完全な鳴禽類(ソングバード)のゲノム配列を解読し、これまで解析が困難だった反復配列やセントロメア、性染色体などを含む全ゲノム構造を明らかにした。従来の鳥類ゲノムでは欠落していた複雑な領域を高精度で再構築したことで、さえずりや学習能力、脳の発達、免疫機能、生殖などに関わる遺伝子や制御領域を詳細に解析できるようになった。また、鳥類特有の進化や遺伝的多様性、染色体構造の理解も大きく進展し、これまで「隠れていた生物学」を明らかにする成果となった。この完全ゲノムは、鳥類の進化研究や行動学、比較ゲノム学の基盤となるだけでなく、人間の言語学習や神経発達の研究モデルとしても重要な資源となる。さらに、希少種の保全や生物多様性研究にも幅広く活用されることが期待される。

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鳴禽類の完全なゲノム The complete genome of a songbird

Giulio Formenti ∙ Nivesh Jain ∙ Jack A. Medico ∙ … ∙ Paul D. Waters ∙ Jennifer Balacco ∙ Erich D. Jarvis
Cell  Published: August 6, 2026
DOI:https://doi.org/10.1016/j.cell.2026.07.018

世界初の完全なソングバードゲノムを解読(First complete songbird genome reveals hidden biology)

Highlights

  • A phased diploid T2T reference resolves the zebra finch somatic genome
  • Complete chromosomes recover 2,710 missing or previously unannotated genes
  • Analysis of complete centromeres suggests a CENP-B-like system in birds
  • Dot chromosomes and the sex chromosome PAR reveal distinctive organization

Summary

Bird genomes are the smallest among amniotes; however, they remain challenging to assemble due to their structural complexity. This study presents a fully phased diploid telomere-to-telomere reference genome for the zebra finch (Taeniopygia guttata), a model organism for neuroscience and evolutionary genomics. Combining sequencing strategies allowed the closing of nearly all gaps, adding ∼90 Mbp of sequence (7.8%). The assembly contains gapless sequences for all microchromosomes, including the elusive dot chromosomes with their distinctive architecture. The genome was comprehensively annotated for genes, repeats, and structural variants. Complete centromeres were identified, along with candidate DNA-binding centromere protein B (CENP-B) homologs, suggesting that birds possess a kinetochore-associated CENP system similar to that of mammals. Relative to the previous reference generated by the Vertebrate Genomes Project, 2,710 (8.13%) previously unassembled or unannotated genes were identified. This complete genome of a songbird serves as a public reference and illuminates avian genome architecture and function.

細胞遺伝子工学
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