Xianshou

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Xianshou
Temporal range: 160  Ma
Xianshou linglong skull.svg
Skull diagram of X. linglong
Scientific classification OOjs UI icon edit-ltr.svg
Domain: Eukaryota
Kingdom: Animalia
Phylum: Chordata
Clade: Synapsida
Clade: Therapsida
Clade: Cynodontia
Clade: Mammaliaformes
Order: Haramiyida
Family: Eleutherodontidae
Genus: Xianshou
Wang, Meng, Bi, Guan and Sheng, 2014
Species

X. linglongWang et al., 2014
X. songaeMeng, et al., 2014

Contents

Xianshou is a genus of gliding [1] haramiyidan synapsid known from the Oxfordian stage of the Jurassic period, approximately 160 million years ago. Two species, X. linglong and X. songae, are known from fossils of the Tiaojishan Formation in the Liaoning province of China. [2]

Etymology

The genus name is derived from Chinese xiān (仙), meaning "immortal" or "celestial being", and shòu (獸), meaning "creature" or "beast". The specific name linglong is derived from both the Chinese word for "exquisite" (玲瓏), and from the name of the town Linglongta, where the holotype was discovered. X. songae is named for the collector of the specimen, Rufeng Song. [2]

Description

X. linglong is believed to have weighed 83 grams (2.9 oz) in life. It can be distinguished from X. songae and Shenshou by the sharper cusps and ridges of its upper molars, and by larger size. X. songae is estimated to have weighed around 40 grams (1.4 oz). [2]

More recent study of Xianshou suggests that, like the closely related Maiopatagium and Vilevolodon , it may have had a patagia and the ability to glide. No patagium is preserved in Xianshou fossils, but the morphology of the limbs and pes is most similar to those of extant gliding mammals. [1]

Phylogeny

The following phylogenetic analysis was recovered by the description of Xianshou. [2]

Euharamiyida

Shenshou

Arboroharamiya

Eleutherodon

Sineleutherus

Xianshou

Xianshou linglong

Xianshou songae

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References

  1. 1 2 Qing-Jin Meng; David M. Grossnickle; Di Liu; Yu-Guang Zhang; April I. Neander; Qiang Ji; Zhe-Xi Luo (2017). "New gliding mammaliaforms from the Jurassic". Nature . in press. doi : 10.1038/nature23476.
  2. 1 2 3 4 Bi, Shundong; Wang, Yuanqing; Sheng, Xia; Meng, Jin (10 September 2014). "Three new Jurassic euharamiyidan species reinforce early divergence of mammals". Nature . 514 (7524). Nature Publishing Group: 579–584. doi:10.1038/nature13718. PMID   25209669.