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First Genome Assembly of the Critically Endangered Arabian Leopard (Panthera pardus nimr)
Fahad H Alqahtani1,2, Ion I Măndoiu3, Badr M Al-Shomrani1,2
1National Center for Bioinformatics, King Abdulaziz City for Science and Technology, Riyadh 11442, Saudi Arabia.
None:
The Arabian leopard (Panthera pardus nimr), native to the Arabian Peninsula, is critically endangered and faces acute threats from habitat fragmentation, low population size, and genetic erosion. As a continuation of our previous study on the complete mitochondrial genome of this subspecies, we now report the first nuclear genome assembly of P. p. nimr, generated from the same wild-born male individual sampled in the Oman. Using PacBio HiFi long-read sequencing, we produced 162.9 gigabases (Gb) of high-fidelity data and assembled a haplotype-aware draft genome with HiFiasm. The assembly spans approximately 2.43 Gb across 94 contigs, achieving a contig N50 of 62.4 Mb and zero gap content, with BUSCO completeness of 99.4%. Genome annotation predicted 23,459 protein-coding genes with annotation BUSCO completeness of 95.0%, and 84.1% of proteins were classified as consistent with the Panthera lineage by OMArk. Repetitive elements occupy 34.01% of the assembly, with retroelements dominating and L1/CIN4 LINEs (15.44%) and SINEs (9.61%) representing the two largest subclasses. Comparative simple sequence repeat (SSR) analysis across six Panthera genomes confirmed a conserved repeat motif architecture, with no lineage-specific expansions detected in P. p. nimr. This nuclear genome complements the mitochondrial reference and provides a foundational resource for future studies on genetic diversity, demographic history, inbreeding load, and conservation planning for the Arabian leopard and other Panthera lineages.
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