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The Rhipicephalus sanguineus group, the brown dog ticks, are cosmopolitan and doubtless the most important ticks of domestic dogs, clinically and economically. Despite four decades of taxonomic enquiry with nucleotide sequences and morphology, the taxonomy of the R. sanguineus group is confused, even chaotic. We provide 13 new mitochondrial (mt) genomes and internal transcribed spacer 2 (ITS2) sequences from nine localities in Australia, Israel and Japan. We inferred phylogenetic trees from 10 mt protein-coding genes (9,514 bp), as well as partial cox1, ITS2, 12S, and 16S rRNA genes, to resolve to common clades the >2,000 nucleotide sequences in GenBank from the R. sanguineus group. Then we applied three species delimitation protocols to 60 entire mt genomes (ca. 15,000 bp) and 162 partial cox1 sequences (472 bp): Automatic Barcode Gap discovery, Assemble Species by Automatic Partitioning, and Poisson Tree Process. We considered pairwise genetic differences and Tamura-Nei genetic distances among 60 entire mt genomes and 162 partial cox1 sequences. We found 16 species-level clades (clades A to P) that we hypothesise represent at least 16 species in the R. sanguineus group. These clades had intra-clade differences of <3.8% (entire mt genomes) and <5.1% (partial cox1) whereas the inter-clade differences were >7.7% (entire mt genomes) and >4.5% (partial cox1). We assigned the species names Rhipicephalus linnaei (Audouin, 1826), Rhipicephalus rutilus (Koch, 1844), Rhipicephalus secundus (Feldman-Muhsam, 1952) and R. sanguineus (Latreille, 1806) to clades A, C, D, and K, respectively. And we hypothesise that the names Rhipicephalus camicasi (Morel, Mouchet & Rodhain, 1976), Rhipicephalus turanicus (Pomerantsev, 1940), Rhipicephalus guilhoni (Morel & Vassilades, 1963), Rhipicephalus sulcatus (Neumann, 1908), Rhipicephalus rossicus (Yakimov & Kol-Yakimova, 1911), Rhipicephalus pumilio (Schulze, 1935) and Rhipicephalus pusillus (Gil Collado, 1936) apply to clades B, E, H, J, M, N and O, respectively. The newly described Rhipicephalus hibericus (Millán, Rodriguez-Pastor & Estrada-Peña, 2024) was genetically indistinguishable from R. sanguineus in clade K and thus is a synonym of R. sanguineus. We could not assign names to clades F (USA, Hungary), I (India, Pakistan), L (Nigeria), G (China, Kazakhstan), and P (Cameroon): some or all of these five clades may be new species in the R. sanguineus group. Our haplotype network of partial mt genes (cox1, cytb and nad2) revealed much genetic similarity among geographically distant populations of R. linnaei. This indicates recent dispersal, likely originating in Africa or the Middle East, since African populations were more genetically diverse than populations in other parts of the world.
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http://dx.doi.org/10.1016/j.ijpara.2025.04.016 | DOI Listing |
Front Microbiol
August 2025
Laboratory of Microbiology, National School of Veterinary Medicine of Sidi Thabet, University of Manouba, Manouba, Tunisia.
Introduction: Ticks and their associated spotted fever group (SFGR) represent an emerging zoonotic risk in Tunisia, where data on tick species distribution and pathogen prevalence remain limited. This study specifically aimed to investigate the diversity and phylogeny of and tick species and to identify and genetically characterize their associated SFGR species in northwestern Tunisia.
Methods: Tick sampling was conducted over a five-month period, from November 2022 to March 2023, in the Jouza district, Beja Governorate, northern Tunisia.
Zoonoses Public Health
August 2025
School of Applied Arts and Sciences, College of Integrative Arts and Sciences, Arizona State University, Tempe, Arizona, USA.
Introduction: Rocky Mountain spotted fever (RMSF), a rapidly progressing febrile disease caused by the bacterium Rickettsia rickettsii, is the deadliest tick-borne disease in the world. Human infection initially results in non-specific symptoms and, if untreated, can result in death in up to 35% of cases. Rhipicephalus sanguineus (brown dog tick) was discovered to spread RMSF in Arizona and Northern Mexico in the early 2000s, and the disease is now considered endemic in areas of the Southwestern United States.
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August 2025
Parasitology Laboratory, Veterinary College, Xinjiang Agricultural University, Ürümqi, China.
Ticks serve as major vectors of zoonotic pathogens, posing significant threats to public health and livestock. However, morphological similarity among closely related species complicates accurate identification. This study employed an integrative taxonomic approach combining morphological and molecular methods to delineate five medically important tick species in Xinjiang, China.
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August 2025
State Key Laboratory for Animal Disease Control and Prevention, Key Laboratory of Veterinary Parasitology of Gansu Province, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, China.
Haemaphysalis longicornis is associated with the transmission of 30 various types of pathogens, having medical and veterinary importance. Hence, this study was designed to investigate the prevailing pathogen in Zhangjiachuan county, Gansu province, China. For the said purpose, we performed a molecular investigation of Rickettsia and Piroplasms pathogens in morpho-molecularly confirmed H.
View Article and Find Full Text PDFActa Trop
September 2025
Istituto Zooprofilattico Sperimentale del Lazio e della Toscana "M. Aleandri", Via Appia Nuova 1411, 00178 Rome, Italy.
Acarological risk (R) was assessed in urban green areas of Rome. R was calculated as the probability of encountering at least one questing tick infected by spotted fever group (SFG) rickettsiae, Borrelia burgdorferi sensu lato and/or Coxiella burnetii, in 100 m transects within paths commonly walked by park-goers. Seasonal dynamics of Ixodes ricinus, Rhipicephalus bursa and Rhipicephalus turanicus were analysed together with their infection prevalence.
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