Independent assembly of the flight apparatus in a non-avian dinosaur clade

The discovery of feathered dinosaurs revolutionized the studies on the origin of birds and the evolution of their flight. Among paravians (birds and their closest relatives), the microraptorine dromaeosaurids are unique in bearing several flight-related adaptations with a controversial evolutionary interpretation, supporting, alternatively, flight as ancestral to Paraves or having evolved multiple times among the latter. Here, we introduce an exquisitely-preserved member of Microraptorinae, Norellraptor barsboldi gen. et sp. nov., and describe in detail forelimb osteohistological features for that clade. Norellraptor nests among late-diverging microraptorines and supports step-wise assembly of aerial adaptations in that clade. About 30% of the microraptorine synapomorphies are convergently acquired by the bird lineage (Avialae). Yet, the sequences of flight-related novelties reconstructed along the two lineages differ consistently; combined with histological evidence which might indicate a peculiar limb growth model in Microraptorinae, these results dismiss a shared developmental pattern driving the evolution of the flying dinosaurs and support multiple and independent selective regimes at the origin of the winged taxa in Paraves. Microraptorines were bird-like dinosaurs that possessed some flight adaptations. A new fossil species from the early Cretaceous, Norellraptor barsboldi, suggests that this group evolved their own flight ability independently from the main lineage of modern birds.

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Publication Details

Journal
Nature Communications
Published
2026-09-29
DOI
https://doi.org/10.1038/s41467-026-77804-6
Primary Topic
Paleontology and Evolutionary Biology
Type
article
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article

Independent assembly of the flight apparatus in a non-avian dinosaur clade

Yang Wang, Yannan Ji, Andrea Cau, Xuri Wang et al.
Nature Communications
Paleontology and Evolutionary Biology
article

Independent assembly of the flight apparatus in a non-avian dinosaur clade

Yang Wang, Yannan Ji, Andrea Cau, Xuri Wang, Martin Kundrát, Yichuan Liu, Qiang Ji
article en

Abstract

The discovery of feathered dinosaurs revolutionized the studies on the origin of birds and the evolution of their flight. Among paravians (birds and their closest relatives), the microraptorine dromaeosaurids are unique in bearing several flight-related adaptations with a controversial evolutionary interpretation, supporting, alternatively, flight as ancestral to Paraves or having evolved multiple times among the latter. Here, we introduce an exquisitely-preserved member of Microraptorinae, Norellraptor barsboldi gen. et sp. nov., and describe in detail forelimb osteohistological features for that clade. Norellraptor nests among late-diverging microraptorines and supports step-wise assembly of aerial adaptations in that clade. About 30% of the microraptorine synapomorphies are convergently acquired by the bird lineage (Avialae). Yet, the sequences of flight-related novelties reconstructed along the two lineages differ consistently; combined with histological evidence which might indicate a peculiar limb growth model in Microraptorinae, these results dismiss a shared developmental pattern driving the evolution of the flying dinosaurs and support multiple and independent selective regimes at the origin of the winged taxa in Paraves. Microraptorines were bird-like dinosaurs that possessed some flight adaptations. A new fossil species from the early Cretaceous, Norellraptor barsboldi, suggests that this group evolved their own flight ability independently from the main lineage of modern birds.

Nature CommunicationsVol. 17(1)
University of Pavol Jozef Šafárik (SK), Ministry of Natural Resources (CN), Chinese Academy of Geological Sciences (CN), China University of Geosciences (Beijing) (CN), Hebei GEO University (CN)
Openalex Percentile: Top 8%
Paleontology and Evolutionary Biology
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