Related Experiment Video
Updated: Apr 8, 2026

A Noninvasive Hair Sampling Technique to Obtain High Quality DNA from Elusive Small Mammals
Published on: March 13, 2011
Genomic resources for two apex avian predators from Saudi Arabia: Falco biarmicus and Falco peregrinus
Andrea Zuccolo1,2,3, Nahed Mohammed1, Abdulmajeed Fahad Alrefaei4
1Center for Desert Agriculture, Biological and Environmental Sciences and Engineering Division, King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia.
Abstract:
Falcons (genus Falco) are a rapidly diversified bird clade, with 38 species evolving over the past ∼7.5 million years. Despite their ecological and evolutionary significance, high-quality genomic resources remain limited. Here, we present two chromosome-level genome assemblies for Falco peregrinus and Falco biarmicus, enabling detailed analyses of genome architecture, gene content, transposable elements (TEs), and structural variation. Using PacBio HiFi sequencing, we generated highly contiguous assemblies (N50: 60.76-77.83 Mb) with >97% BUSCO completeness. Comparative analyses with Gallus gallus and Falco rusticolus revealed strong synteny among Falco species, whereas extensive chromosomal rearrangements were observed in comparison with the more distantly related Gallus gallus. TEs account for 7.43-8.44% of the genomes, with LINEs (CR1) and DNA transposons (Mutator, CACTA) predominating. Contigs belonging to the W sex chromosome were identified based on their significantly higher TE content (30% or more) compared to autosomes and the Z chromosome. Gene prediction, informed by long-read RNA Iso-Seq, identified 18,638-19,858 genes per genome, aligning with prior Falcon annotations. Importantly, we recovered key immune and sensory gene families, including MHC class I/II, innate immune receptors, and 24-25 olfactory receptor genes. We detected 8,746 structural variants, over 40% of which involved TEs, underscoring their role in genome polymorphism. These assemblies provide a valuable resource for investigating avian chromosome evolution, TE dynamics, and species-specific adaptations. They also establish a foundation for comparative genomics, population genetics, and conservation efforts in falcons.
Related Concept Videos
Cis-regulatory Sequences
Conservation of Declining Populations
Genetic Screens
Forward genetic screens
Forward or “classical” genetic screens involve creating random mutations in an organism’s DNA using radiation, mutagens, or insertion of additional bases, which...

