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March 2, 2026Open Veterinary Journal0 citationsOpen Access

Genetic taxonomical study of the families squalidae and squatinidae with the first mediterranean record of Squalus mitsukurii and the first Libyan record of Squalus megalops

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OEOsama El-barasiAAAhmad AzabMFMariem Feki

Key Points

  • The aim is to classify sharks from the Squalidae and Squatinidae families along the Eastern Libyan coast using genetic methods.
  • Utilized COI gene barcoding to analyze shark specimens.
  • Matched sequences with global reference databases for taxonomic identification.
  • Constructed a phylogenetic tree using the neighbor-joining method.
  • Confirmed Squalus mitsukurii as the first recorded in the Mediterranean Sea.
  • Confirmed Squalus megalops as the first recorded in the Libyan coast.
  • First genetic confirmations of Squatina oculata, Squatina squatina, and Squatina aculeata in Libyan waters.
  • Haplotype network analysis revealed low genetic variation among species.

Abstract

Background: A genetic analysis was conducted to identify and classify sharks from the families Squalidae and Squatinidae at the Eastern Libyan coast of the Mediterranean Sea. Aim: This study was based on COI gene barcoding, and the sequences obtained were matched with global reference databases to ascertain their taxonomic identity and genetic diversity ratio. Methods: The sequences were then deposed to the GenBank database through the BankIt submission system where the following accession numbers were assigned: Squalus mitsukurii (PV717998), Squalus megalops (PV718644), Squatina oculata (PV716693), Squatina squatina (PV738303), and Squatina aculeata (PV719649). The phylogenetic evolution tree was constructed by applying the neighbor-joining method (Chromas Pro v1.5 Beta). Results: S. mitsukurii was the first confirmed genetic record of the Mediterranean Sea, whereas S. megalops was the first confirmed genetic record of the Libyan coast. In addition, S. oculata, S. squatina, and S. aculeata were genetically confirmed in Libyan waters for the first time. Haplotype network analysis revealed a clear distinction of genetic distance among the species, with little variation among the species. Nucleotide diversity and Tajima D were computed, and both showed a strong deviation from neutrality, which could have been caused by either selective pressures or past demographic changes. Conclusion: Collectively, these findings contribute significantly to the ichthyofaunal diversity of Libya and the Mediterranean Sea in general, and they further demonstrate the power of DNA barcoding as a means of recording and preserving shark diversity.

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Cite This Study

El-barasi et al. (2026) studied this question.

synapsesocial.com/papers/69a52de5f1e85e5c73bf1050https://doi.org/10.5455/ovj.2026.v16.i2.5
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