恐竜の糞の中に保存された化石羽毛が、なぜ一部の鳥類が大量絶滅を生き延びたのかを解明する可能性(Fossil feathers preserved inside dinosaur poop could help explain why some birds survived the dinosaur mass extinction)

2026-09-10 ワシントン大学(UW)

ワシントン大学などの研究チームは、恐竜の糞化石(コプロライト)の内部に保存された鳥類の羽毛化石を発見し、約6600万年前の大量絶滅を生き延びた鳥類の生態を解明する手掛かりを得た。研究対象となった糞化石は、白亜紀末の大量絶滅直前に生息していた獣脚類恐竜のものと考えられ、内部から複数の羽毛が見つかった。羽毛は現生鳥類の羽と共通する微細構造を持ち、当時の鳥類が恐竜の大型捕食者などに捕食されていたことを示す直接的な証拠となる。さらに、羽毛の形態から、これらの鳥類は飛翔能力を持っていた可能性が高いと推定された。研究者らは、白亜紀末の絶滅を生き残った鳥類が、地上性で大型化した種ではなく、小型で飛翔能力を持つなど、特定の生態的特徴を備えていた可能性を指摘する。糞化石という従来あまり利用されなかった資料から食物網や捕食関係を復元できることも示しており、恐竜絶滅後の鳥類の進化を理解する新たな手法となる。

恐竜の糞の中に保存された化石羽毛が、なぜ一部の鳥類が大量絶滅を生き延びたのかを解明する可能性(Fossil feathers preserved inside dinosaur poop could help explain why some birds survived the dinosaur mass extinction)

The fossilized feather exposed on the surface of the coprolite. Photo: O’Connor et al./Current Biology

<関連情報>

後期白亜紀の糞石から見つかった鳥の羽 Bird feathers from a Late Cretaceous coprolite

Jingmai K. O’Connor ∙ David G. DeMar, Jr. ∙ Nathan R. Carroll ∙ … ∙ David J. Bottjer ∙ Luis M. Chiappe ∙ Gregory P. Wilson Mantilla

Current Biology  Published:September 10, 2026

DOI:https://doi.org/10.1016/j.cub.2026.08.054

Highlights

  • Exceptionally preserved feathers found in 66 Mya medium-sized theropod coprolite
  • Associated bones suggest the feathers are from an aquatic hesperornithiform bird
  • Feathers show a square rachis and medulla evolved in the Mesozoic
  • Hesperornithiforms also retained primitive feathers possibly relating to extinction

Summary

Fossilized feathers are rare, yet critical for understanding the evolution of flight in pennaraptoran dinosaurs and the appearance of crown birds in the Late Cretaceous.1,2 Feathers associated with skeletal remains are abundant in several Lower Cretaceous Lagerstätten3,4,5 but nearly absent from Upper Cretaceous deposits.6,7 As such, the evolution of avian feathers close to the emergence of the crown-group Neornithes remains largely unknown. Here we report on an exceptionally preserved three-dimensional pennaceous feather preserved in a medium-sized theropod dinosaur coprolite found in the uppermost Maastrichtian Hell Creek Formation in North America. Arguably the best-preserved feather ever recovered from Mesozoic lithic deposits, it demonstrates that the anatomically modern lightweight and stiff feather with a square, medulla-filled rachis was in place in Pennaraptora before the end-Cretaceous mass extinction. Skeletal remains from the same coprolite suggest the feather belongs to a hesperornithiform, a lineage of flightless aquatic birds within Ornithurae but outside Neornithes.8 Consistent with this identification, the feather exhibits a low structural index and high barb density, adaptations for reduced penetrability present in extant aquatic birds.9,10,11 Tiny associated gar scales are interpreted as the bird’s last meal. Microcomputed-tomography data reveal the preservation of additional associated feathers, including extinct morphotypes, within the coprolite,3 suggesting these morphotypes persisted even in crownward, non-neornithine birds until the end-Cretaceous mass extinction. Differences in plumage, especially with regard to body feathers most responsible for thermal insulation, may have played a role in the extinction of all non-neornithine pennaraptorans during the hypothesized asteroid-induced impact winter.12

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