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The Genome Segments of Bluetongue Virus Differ in Copy Number in a Host-Specific Manner. | LitMetric

AI Article Synopsis

  • Genome segmentation in bluetongue virus (BTV) influences segment abundance, leading to unequal frequencies in different hosts (ruminants vs. biting midges).
  • A new reverse transcription-quantitative PCR (RT-qPCR) method was used to measure these segment frequencies during an epizootic, revealing distinct patterns between hosts.
  • The findings suggest that segment frequency variation plays a critical role in viral expression regulation and evolution, warranting further investigation beyond just multipartite viruses.

Article Abstract

Genome segmentation is mainly thought to facilitate reassortment. Here, we show that segmentation can also allow differences in segment abundance in populations of bluetongue virus (BTV). BTV has a genome consisting in 10 segments, and its cycle primarily involves periodic alternation between ruminants and biting midges. We have developed a reverse transcription-quantitative PCR (RT-qPCR) approach to quantify each segment in wild BTV populations sampled in both ruminants and midges during an epizootic. Segment frequencies deviated from equimolarity in all hosts. Interestingly, segment frequencies were reproducible and distinct between ruminants and biting midges. Beyond a putative regulatory role in virus expression, this phenomenon could lead to different evolution rates between segments. The variation in viral gene frequencies remains a largely unexplored aspect of within-host genetics. This phenomenon is often considered to be specific to multipartite viruses. Multipartite viruses have segmented genomes, but in contrast to segmented viruses, their segments are each encapsidated alone in a virion. A main hypothesis explaining the evolution of multipartism is that, compared to segmented viruses, it facilitates the regulation of segment abundancy, and the genes the segments carry, within a host. These differences in gene frequencies could allow for expression regulation. Here, we show that wild populations of a segmented virus, bluetongue virus (BTV), also present unequal segment frequencies. BTV cycles between ruminants and biting midges. As expected from a role in expression regulation, segment frequencies tended to show specific values that differed between ruminants and midges. Our results expand previous knowledge on gene frequency variation and call for studies on its role and conservation beyond multipartite viruses.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7737730PMC
http://dx.doi.org/10.1128/JVI.01834-20DOI Listing

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