ナノティラヌス化石でTレックス進化史が再構築(Nanotyrannus Confirmed: Dueling Dinosaurs Fossil Rewrites the Story of T. rex)

2025-10-30 ノースカロライナ州立大学(NC State)

ノースカロライナ州立大学とストーニーブルック大学の共同研究で、長年論争となっていた「ナノティラヌス(Nanotyrannus)」がティラノサウルス・レックスの未成熟個体ではなく、独立した種であることが確認された。発見はモンタナ州の「デュエリング・ダイナソーズ」化石標本に基づき、骨の成長輪や神経構造などから個体が20歳前後の成熟個体であったことを特定。さらに新種N. lethaeusも命名された。この結果、白亜紀末期にはT. rexと複数の小型ティラノサウルス属が共存していたことが判明し、当時の生態系の多様性と競争関係が再評価されることとなった。研究成果は『Nature』誌に掲載。

ナノティラヌス化石でTレックス進化史が再構築(Nanotyrannus Confirmed: Dueling Dinosaurs Fossil Rewrites the Story of T. rex)
A pack of Nanotyrannus brazenly attacks a juvenile T. rex. Illustration by Anthony Hutchings.

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ナノティラヌスとティラノサウルスは白亜紀末期に共存していた Nanotyrannus and Tyrannosaurus coexisted at the close of the Cretaceous

Lindsay E. Zanno & James G. Napoli
Nature  Published:30 October 2025
DOI:https://doi.org/10.1038/s41586-025-09801-6

Abstract

Tyrannosaurus rex ranks among the most comprehensively studied extinct vertebrates1 and a model system for dinosaur paleobiology1. As one of the last surviving non-avian dinosaurs, Tyrannosaurus is a crucial datum for assessing terrestrial biodiversity, ecosystem structure, and biogeographic exchange immediately preceding the end-Cretaceous mass extinction —one of Earth’s greatest biological catastrophes. Paleobiological studies of Tyrannosaurus, including ontogenetic niche partitioning2-4, feeding, locomotor biomechanics,5,6and life history7-9 have drawn upon an expanding skeletal sample comprising multiple hypothesized growth stages—and yet the Tyrannosaurus hypodigm remains controversial10-13. A key outstanding question relates to specimens considered to exemplify immature Tyrannosaurus1,14-19, which have been argued to represent the distinct taxon Nanotyrannus11,13,20,21. Here, we describe an exceptionally well-preserved, near somatically mature tyrannosaur skeleton (NCSM 40000) from the Hell Creek Formation that shares autapomorphies with the holotype specimen of N. lancensis. We couple comparative anatomy, longitudinal growth models, observations on ontogenetic character invariance, and a novel phylogenetic dataset to test the validity of Nanotyrannus, demonstrating conclusively that this taxon is distinguishable from Tyrannosaurus, sits outside Tyrannosauridae, and unexpectedly contains two species—N. lancensis and N. lethaeus, sp. nov. Our results prompt a re-evaluation of dozens of existing hypotheses based on currently indefensible ontogenetic trajectories. Finally, we document at least two co-occurring, ecomorphologically distinct genera in the Maastrichtian of North America, demonstrating that tyrannosauroid alpha diversity was thriving within one million years of the end-Cretaceous extinction.

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