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A Jurassic gliding euharamiyidan mammal with an ear of five auditory bones

Author

Listed:
  • Gang Han

    (Paleontology Center, Bohai University
    Hainan Tropical Ocean University)

  • Fangyuan Mao

    (Key Laboratory of Evolutionary Systematics of Vertebrates, Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences)

  • Shundong Bi

    (Indiana University of Pennsylvania)

  • Yuanqing Wang

    (Key Laboratory of Evolutionary Systematics of Vertebrates, Institute of Vertebrate Paleontology and Paleoanthropology, Chinese Academy of Sciences)

  • Jin Meng

    (American Museum of Natural History)

Abstract

Gliding is a distinctive locomotion type that has been identified in only three mammal species from the Mesozoic era. Here we describe another Jurassic glider that belongs to the euharamiyidan mammals and shows hair details on its gliding membrane that are highly similar to those of extant gliding mammals. This species possesses a five-boned auditory apparatus consisting of the stapes, incus, malleus, ectotympanic and surangular, representing, to our knowledge, the earliest known definitive mammalian middle ear. The surangular has not been previously identified in any mammalian middle ear, and the morphology of each auditory bone differs from those of known mammals and their kin. We conclude that gliding locomotion was probably common in euharamiyidans, which lends support to idea that there was a major adaptive radiation of mammals in the mid-Jurassic period. The acquisition of the auditory bones in euharamiyidans was related to the formation of the dentary-squamosal jaw joint, which allows a posterior chewing movement, and must have evolved independently from the middle ear structures of monotremes and therian mammals.

Suggested Citation

  • Gang Han & Fangyuan Mao & Shundong Bi & Yuanqing Wang & Jin Meng, 2017. "A Jurassic gliding euharamiyidan mammal with an ear of five auditory bones," Nature, Nature, vol. 551(7681), pages 451-456, November.
  • Handle: RePEc:nat:nature:v:551:y:2017:i:7681:d:10.1038_nature24483
    DOI: 10.1038/nature24483
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