AI Article Synopsis

  • Biting midges are important vectors for arboviruses, playing a significant role in the emergence and spread of the Schmallenberg virus (SBV) in Europe, with potential implications for other viruses.
  • The study introduces a new metaviromic method called MetaViC, designed to detect novel RNA viruses in biting midges using high throughput sequencing without needing a known host genome.
  • Researchers identified several new viruses from Scottish midge samples, including an alphanodavirus and two rhabdo-like viruses, which were genetically distinct from previously known viruses, enhancing our understanding of viral diversity in these insects.

Article Abstract

Biting midges ( species) are vectors of arboviruses and were responsible for the emergence and spread of (SBV) in Europe in 2011 and are likely to be involved in the emergence of other arboviruses in Europe. Improved surveillance and better understanding of risks require a better understanding of the circulating viral diversity in these biting insects. In this study, we expand the sequence space of RNA viruses by identifying a number of novel RNA viruses from (biting midge) using a meta-transcriptomic approach. A novel metaviromic pipeline called MetaViC was developed specifically to identify novel virus sequence signatures from high throughput sequencing (HTS) datasets in the absence of a known host genome. MetaViC is a protein centric pipeline that looks for specific protein signatures in the reads and contigs generated as part of the pipeline. Several novel viruses, including an alphanodavirus with both segments, a novel relative of the Hubei sobemo-like virus 49, two rhabdo-like viruses and a chuvirus, were identified in the Scottish midge samples. The newly identified viruses were found to be phylogenetically distinct to those previous known. These findings expand our current knowledge of viral diversity in arthropods and especially in these understudied disease vectors.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6784199PMC
http://dx.doi.org/10.3390/v11090865DOI Listing

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