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Published on: February 28, 2015
Puumala hantavirus genetic variability in an endemic region (Northern Sweden)
Patrik Johansson1, Gert E Olsson, Hwee-Teng Low
1Defence Medical and Environmental Research Institute, DSO National Laboratories, Singapore 118230, Singapore.
Abstract:
Puumala hantavirus (PUUV), naturally harboured and shed by bank voles (Myodes [Clethrionomys] glareolus), is the etiological agent to nephropathia epidemica (NE), a mild haemorrhagic fever with renal syndrome. Both host and virus are found throughout much of the European continent and in northern Sweden NE is the second most prevalent serious febrile viral infection after influenza. The reliability of diagnostics by PCR depends on genetic variability for the detection of viral nucleic acids in unknown samples. In the present study we evaluated the genetic variability of PUUV isolated from bank voles in an area of northern Sweden highly endemic for NE. Genetic variability among bank voles was also investigated to evaluate co-evolutionary patterns. We found that the viral sequence appeared stable across the 80km study region, with the exception of the southernmost sampling site, which differed from its nearest neighbour by 7%, despite a geographical separation of only 10km. The southernmost sampling site demonstrated a higher degree of genetic similarity to PUUV previously isolated 100km south thereof; two locations appear to constitute a separate PUUV phylogenetic branch. In contrast to the viral genome, no phylogenetic variance was observed in the bank vole mtDNA in this study. Previous studies have shown that as a result of terrestrial mammals' postglacial re-colonization routes, bank voles and associated PUUV of a southern and a northern lineage established a dichotomous contact zone across the Scandinavian peninsula approximately 100-150km south of the present study sites. Our observations reveal evolutionary divergence of PUUV that has led to dissimilarities within the restricted geographical scale of the northern host re-colonization route as well. These results suggest either a static situation in which PUUV strains are regionally well adapted, or an ongoing process in which strains of PUUV circulate on a geographical scale not yet reliably described.
Insights
Puumala hantavirus (PUUV) shows genetic divergence in northern Sweden, with one site exhibiting unique viral strains. Bank vole genetics remained stable, suggesting regional PUUV adaptation or ongoing circulation. This impacts nephropathia epidemica diagnostics.
Area of Science:
- Virology
- Genetics
- Epidemiology
Background:
- Puumala hantavirus (PUUV) causes nephropathia epidemica (NE), a significant febrile illness in Europe.
- Bank voles (Myodes glareolus) are the primary reservoir for PUUV.
- Accurate NE diagnosis relies on understanding PUUV genetic variability for PCR detection.
Purpose of the Study:
- To assess the genetic variability of PUUV in bank voles within an NE-endemic region of northern Sweden.
- To investigate potential co-evolutionary patterns between PUUV and its bank vole host.
- To evaluate the implications of observed genetic diversity for diagnostic reliability and epidemiological understanding.
Main Methods:
- Collection of bank voles and PUUV samples across an 80km transect in northern Sweden.
- Genetic sequencing of PUUV isolates to determine viral genetic variability.
- Analysis of bank vole mitochondrial DNA (mtDNA) to assess host genetic diversity and phylogenetic patterns.
Main Results:
- PUUV sequences were largely stable across the study region, except for the southernmost site, which showed significant divergence (7%) from its nearest neighbor.
- The southernmost PUUV isolates exhibited greater genetic similarity to strains found 100km further south, suggesting a distinct phylogenetic branch.
- No significant phylogenetic variation was detected in the bank vole mtDNA, contrasting with the viral genome.
Conclusions:
- The findings reveal evolutionary divergence in PUUV within a limited geographical area, challenging previous assumptions based on broader host re-colonization routes.
- The observed genetic differentiation suggests either regional adaptation of PUUV strains or an active, uncharacterized circulation pattern.
- Understanding this localized genetic variability is crucial for refining diagnostic tools and comprehending the epidemiology of NE in northern Sweden.
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