The First Chromosome-Scale Genome Assembly for Dermacentor reticulatus: A Key Vector of Tick-Borne Pathogens of Public and Veterinary Health Importance in Europe
Billows, N.; White, M. L.; Thorpe, J.; Higgins, M.; Collins, E.; Santos de Jesus, M.; Kristan, M.; Pullan, S.; Biddlecombe, S. M.; Brown, F. V.; Clark, T. G.; Hansford, K. M.; Medlock, J. M.; Campino, S.
Show abstract
BackgroundDermacentor reticulatus is a key tick species across Europe and an established vector of multiple pathogens that affect both human and animal health. Despite its significant role in disease transmission, genomic data for this species remain limited. Here, we present the first chromosome-scale genome assembly of D. reticulatus, constructed using Oxford Nanopore long-read sequencing data. MethodsHigh molecular weight DNA was extracted from a female Dermacentor reticulatus collected in Devon, UK, and sequenced using Oxford Nanopore long-read technology. Genome assemblies were generated using both guided and unguided approaches, followed by repeat masking, gene prediction, and functional annotation. Genome completeness was assessed using BUSCO, and comparative, phylogenetic, and functional analyses were performed against other Dermacentor and tick species. ResultsThis chromosome-scale genome assembly revealed a repeat-rich genome, with approximately 61.9% of the total sequence consisting of repetitive elements. Benchmarking universal single-copy ortholog (BUSCO) analysis demonstrated strong genome completeness, with guided assembly (chromosome) achieving a score of 97.1%, closely matching those of related Dermacentor species. For comparison, unguided assembly (scaffold) yielded a BUSCO score of 96.7%. Gene annotation following repeat masking resulted in BUSCO completeness scores of 95.1% (guided) and 95.0% (unguided). Functional characterisation included Pfam domain assignment and Gene Ontology analysis. Additionally, we assembled the mitochondrial genome (15,103 bp), comprising 38 genes, providing further insight into D. reticulatus phylogenetic placement. ConclusionsThis genomic resource establishes a foundation for functional genomics, evolutionary studies and supports future research in vector biology and the control of tick-borne diseases.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Precise annotation of tick mitochondrial genomes reveals multiple STR variation and one transposon-like element 96%
- Genetic stability of Aedes aegypti populations following invasion by wMel Wolbachia 95%
- Transcriptome of the synganglion and characterization of the cys-loop ligand-gated ion channel gene family in the tick Ixodes ricinus. 95%
Similar papers in this journal
- Sex-based de novo transcriptome assemblies of the parasitoid wasp Encarsia suzannae, a host of the manipulative heritable symbiont Cardinium hertigii 96%
- Genomic resources for the North American water vole (Microtus richardsoni) and the montane vole (Microtus montanus) 95%
- A reference genome for the critically endangered woylie, Bettongia penicillata ogilbyi 95%
Similar papers in this journal
- Genomic analysis of Strongyloides stercoralis and Strongyloides fuelleborni in Bangladesh 95%
- Polymorphism analyses and protein modelling inform on functional specialization of Piwi clade genes in the arboviral vector Aedes albopictus 95%
- Sex-specific distribution and classification of Wolbachia infections and mitochondrial DNA haplogroups in Aedes albopictus from the Indo-Pacific 95%
Similar papers in this journal
- What does mitogenomics tell us about the evolutionary history of the Drosophila buzzatii cluster (repleta group) 96%
- Isolation and characterization of a novel Wolbachia bacteriophage from Allonemobius socius crickets in Missouri 95%
- Great-tailed Grackles (Quiscalus mexicanus) as a tolerant host of avian malaria parasites 94%
Similar papers in this journal
- Culex pipiens L. and Culex restuans egg rafts harbor diverse bacterial communities compared to their midgut tissues 94%
- Molecular detection of Leishmania donovani, Leishmania major, and Trypanosoma spp. in Sergentomyia squamipleuris sandflies from a visceral leishmaniasis focus in Merti sub-County, eastern Kenya 94%
- Nanopore adaptive sampling for mitogenome sequencing and bloodmeal identification in hematophagous insects 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.