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Billows, N.

Publications and source records attributed to Billows, N..

2 recordsLinked to original sources

A Plasmodium falciparum Pangenome Resource to Drive Structural Variant Discovery and to assist Malaria Control

Plasmodium falciparum, the deadliest causative agent of malaria, harbours extensive structural variation that underlies key biological processes including drug resistance and diagnostic evasion. Here, we present PfPan, a P. falciparum pangenome constructed from 13 geographically diverse high-quality reference genomes using Minigraph-Cactus, adding 4.7 Mb of sequence beyond the 3D7 linear reference. We identify over 5,000 structural variants across the reference genomes and demonstrate improved genotyping using the vg toolkit compared to linear reference-based approaches, with comparable performance for small variant discovery. Benchmarking against assembly-derived truth sets confirms pangenome superiority for structural variant detection, particularly at complex and hypervariable loci. Applying PfPan to 878 globally sampled P. falciparum whole-genome sequences, we characterise the population-level frequency of clinically relevant structural variants, including a high-frequency 10.4 kb insertion at the drug resistance-linked gch1 locus, and explore deletions upstream of the gene encoding the diagnostic target HRP2. PfPan provides a foundational resource for reducing reference bias in P. falciparum genomic surveillance and offers a framework for improved detection of variants relevant to drug resistance and malaria control.

genomics↗

The First Chromosome-Scale Genome Assembly for Dermacentor reticulatus: A Key Vector of Tick-Borne Pathogens of Public and Veterinary Health Importance in Europe

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.

genomics↗