Related Experiment Video
Updated: Nov 9, 2025

Early Metamorphic Insertion Technology for Insect Flight Behavior Monitoring
Published on: July 12, 2014
A new darwinopteran pterosaur reveals arborealism and an opposed thumb
Xuanyu Zhou1, Rodrigo V Pêgas2, Waisum Ma3
1State Key Laboratory of Biogeology and Environmental Geology, China University of Geosciences, Beijing, China; Key Laboratory of Stratigraphy and Palaeontology (Ministry of Natural Resources), Institute of Geology, Chinese Academy of Geological Sciences, Beijing, China; Beipiao Pterosaur Museum of China, Beipiao, Liaoning, China.
Abstract:
Pterosaurs, which lived during the Mesozoic, were the first known vertebrates to evolve powered flight.1,2 Arboreal locomotion has been proposed for some taxa,3,4 and even considered to have played a role in the origin of pterosaur flight.5,6 Even so, there is still need for comprehensive quantitative ecomorphological analyses.3,4 Furthermore, skeletal adaptations correlated to specialized lifestyles are often difficult to recognize and interpret in fossils. Here we report on a new darwinopteran pterosaur that inhabited a unique forest ecosystem from the Jurassic of China. The new species exhibits the oldest record of palmar (or true) opposition of the pollex, which is unprecedented for pterosaurs and represents a sophisticated adaptation related to arboreal locomotion. Principal-coordinate analyses suggest an arboreal lifestyle for the new species but not for other closely related species from the same locality, implying a possible case of ecological niche partitioning. The discovery adds to the known array of pterosaur adaptations and the history of arborealism in vertebrates. It also adds to the impressive early bloom of arboreal communities in the Jurassic of China, shedding light on the history of forest environments.
Related Concept Videos
Convergent Evolution
The Fossil Record
Optimal Foraging

