ArticleMolecular ecology2022
Host genetic factors associated with the range limit of a European hantavirus.
Article in Molecular ecology, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 12 citations in OpenAlex.
- Host hybridization enabled the emergence of a reassorted hantavirus lineage.PLoS pathogens · 2026Article
- Hantavirus Emergence in a Changing World: Virology, Pathogenesis, Surveillance, and One Health Preparedness.Microorganisms · 2026Review
- Co-Circulation of Divergent Strains Supports Vector-Mediated Transmission of Rodent Hepacivirus J (Viruses · 2026Article
- Persistence, spillover, and evolution of co-occurring lineages of lymphocytic choriomeningitis virus.Virus evolution · 2025Article
- Detection of divergent Orthohantavirus tulaense provides insight into wide host range and viral evolutionary patterns.Npj viruses · 2024Article
- Genomes of Microtus Rodents Highlight the Importance of Olfactory and Immune Systems in Their Fast Radiation.Genome biology and evolution · 2024Article
- Genome-wide support for incipient Tula hantavirus species within a single rodent host lineage.Virus evolution · 2024Article
- Continuous presence of genetically diverse rustrela virus lineages in yellow-necked field mouse reservoir populations in northeastern Germany.Virus evolution · 2023Article
- Article
- Host genetic factors associated with the range limit of a European hantavirus.Molecular ecology · 2022Article
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Authors and funding
4 authors at 1 institution in 1 country.
Funding
Abstract
The natural host ranges of many viruses are restricted to very specific taxa. Little is known about the molecular barriers between species that lead to the establishment of this restriction or generally prevent virus emergence in new hosts. Here, we identify genomic polymorphisms in a natural rodent host associated with a strong genetic barrier to the transmission of European Tula orthohantavirus (TULV). We analysed the very abrupt spatial transition between two major phylogenetic clades in TULV across the comparatively much wider natural hybrid zone between evolutionary lineages of their reservoir host, the common vole (Microtus arvalis). Genomic scans of 79,225 single nucleotide polymorphisms (SNPs) in 323 TULV-infected host individuals detected 30 SNPs that were consistently associated with the TULV clades CEN.S or EST.S in two replicate sampling transects. Focusing the analysis on 199 voles with evidence of genomic admixture at the individual level (0.1-0.9) supported statistical significance for all 30 loci. Host genomic variation at these SNPs explained up to 37.6% of clade-specific TULV infections. Genes in the vicinity of associated SNPs include SAHH, ITCH and two members of the Syngr gene family, which are involved in functions related to immune response or membrane transport. This study demonstrates the relevance of natural hybrid zones as systems not only for studying processes of evolutionary divergence and speciation, but also for the detection of evolving genetic barriers for specialized parasites.
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