Non-avian reptiles are good models to investigate structural and developmental differences between amniotes. Investigations of craniofacial development in a complete series of embryos from oviposition up to hatching are still relatively rare. Consideration of a complete series can reveal developmental events that were previously missed, and thus correct or confirm theories about developmental events. The Egyptian Sand snake, Psammophis sibilans, has been a key species in descriptions of the snake skull development. However, published work was based on a limited sample of specimens collected from the wild. Here, we supplement previous descriptions with an illustrated account of skull development in P. sibilans based on a staged series of embryos and histological sections. Our findings largely agree with those of previous authors, although we record differences in developmental timing, confirming the presence of an egg tooth in this species. We add further observations on the enigmatic fenestra X, showing that it closes rather than merging with the prootic notch. Our observations revealed the likely contribution of the tectum posterius to the occipital roof, the presence of an internal carotid foramen (possibly transitory or variable), and the formation of the initial laterosphenoid pillar.
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http://dx.doi.org/10.1111/joa.13081 | DOI Listing |
Anat Rec (Hoboken)
November 2022
Institute of Systematics and Evolution of Animals, Polish Academy of Sciences, Kraków, Poland.
We here describe abundant new snake material from the late Miocene (MN 13) of Salobreña, Spain. Vertebral morphology suggests a referral of the specimens to the extant psammophiid Psammophis, documenting the first occurrence of this genus in Europe. The diversity and disparity across the vertebral morphology of different psammophiid genera are discussed.
View Article and Find Full Text PDFBMC Biol
January 2022
Venom Evolution Lab, School of Biological Sciences, University of Queensland, St Lucia, 4072, Australia.
Background: The explosive radiation and diversification of the advanced snakes (superfamily Colubroidea) was associated with changes in all aspects of the shared venom system. Morphological changes included the partitioning of the mixed ancestral glands into two discrete glands devoted for production of venom or mucous respectively, as well as changes in the location, size and structural elements of the venom-delivering teeth. Evidence also exists for homology among venom gland toxins expressed across the advanced snakes.
View Article and Find Full Text PDFZootaxa
May 2021
Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610041, China.
An adult sand snake specimen was collected during a herpetofaunal survey conducted in the Turpan Basin in northwest China. Phylogenetic analyses revealed that this specimen, along with other snake sloughs and skins collected from different localities in the Turpan Basin formed a clade that is sister to Psammophis lineolatus. This taxon exhibited substantial divergence from its congeners (P.
View Article and Find Full Text PDFToxicon
October 2020
Department of Toxinology, Women's and Children's Hospital, 72, King William St., North Adelaide, South Australia, 5000, Australia.
A recent case of a bite by a psammophiid snake, Psammophis schokari, is described and analyzed. This is the first report of local envenoming by this species. The 1 m long P.
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