Related Experiment Video
Updated: Jun 6, 2025

Validating Whole Genome Nanopore Sequencing, using Usutu Virus as an Example
Published on: March 11, 2020
Analysis of Powassan Virus Genome Sequences from Human Cases Reveals Substantial Genetic Diversity with Implications
Erik H Klontz1, Navid Chowdhury1, Nolan Holbrook1
1Department of Pathology, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114, USA.
Abstract:
Powassan virus (POWV) is an emerging tick-borne virus that causes severe meningoencephalitis in the United States, Canada, and Russia. Serology is generally the preferred diagnostic modality, but PCR on cerebrospinal fluid, blood, or urine has an important role, particularly in immunocompromised patients who are unable to mount a serologic response. Although the perceived poor sensitivity of PCR in the general population may be due to the biology of infection and health-seeking behavior (with short viremic periods that end before hospital presentation), limitations in assay design may also contribute. Genome sequences from clinical POWV cases are extremely scarce; PCR assay design has been informed by those available, but the numbers are limited. Larger numbers of genome sequences from tick-derived POWV are available, but it is not known if POWV genomes from human infections broadly mirror genomes from tick hosts, or if human infections are caused by a subset of more virulent strains. We obtained viral genomic data from 10 previously unpublished POWV human infections and showed that they broadly mirror the diversity of genome sequences seen in ticks, including all three major clades (lineage I, lineage II Northeast, and lineage II Midwest). These newly published clinical POWV genome sequences include the first confirmed lineage I infection in the United States, highlighting the relevance of all clades in human disease. An in silico analysis of published POWV PCR assays shows that many assays were optimized against a single clade and have mismatches that may affect their sensitivity when applied across clades. This analysis serves as a launching point for improved PCR design for clinical diagnostics and environmental surveillance.
Insights
Powassan virus (POWV) genome diversity in human infections mirrors tick-derived strains, including all major clades. This finding is crucial for improving POWV PCR diagnostic accuracy and surveillance efforts.
Area of Science:
- Virology
- Infectious Diseases
- Genomics
Background:
- Powassan virus (POWV) is an emerging tick-borne pathogen causing severe meningoencephalitis in North America and Russia.
- Current diagnostic methods include serology and PCR, but PCR sensitivity may be limited by short viremic periods and assay design.
- Limited genomic data from clinical POWV cases hinders comprehensive understanding and diagnostic assay development.
Purpose of the Study:
- To analyze the genomic diversity of POWV in human infections.
- To compare clinical POWV genomes with those from tick hosts.
- To evaluate the impact of genomic diversity on existing PCR assay sensitivity.
Main Methods:
- Sequencing of 10 previously unpublished POWV human infection genomes.
- Bioinformatic analysis comparing clinical and tick-derived POWV genomes across major clades.
- In silico assessment of published POWV PCR assay performance against diverse clades.
Main Results:
- Genomic data from human POWV infections broadly reflect the diversity found in tick populations, encompassing all three major lineages (I, II Northeast, II Midwest).
- The study identified the first confirmed lineage I POWV infection in the United States.
- In silico analysis revealed that many existing PCR assays exhibit mismatches when applied across different POWV clades, potentially impacting diagnostic sensitivity.
Conclusions:
- Human POWV infections harbor genomic diversity comparable to tick-derived strains, emphasizing the need to consider all clades in diagnostics.
- The findings provide a basis for developing more robust and sensitive PCR assays for POWV detection.
- Improved diagnostic tools are essential for effective clinical management and environmental surveillance of Powassan virus.

