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. 2023 Dec:322:114807.
doi: 10.1016/j.jviromet.2023.114807. Epub 2023 Sep 6.

A rapid and affordable amplicon-based method for next-generation genome sequencing of the infectious bursal disease virus

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A rapid and affordable amplicon-based method for next-generation genome sequencing of the infectious bursal disease virus

Claudia Techera et al. J Virol Methods. 2023 Dec.

Abstract

The infectious bursal disease virus (IBDV) causes a severe immunosuppressive disorder in young chickens. IBDV evolution resulted in the emergence of strains with divergent genetic, antigenic, and pathogenic characteristics. Genetic classification is typically performed by sequencing the coding region of the most immunogenic region of the viral protein 2 (VP2). Sequencing both double-stranded RNA genome segments is essential to achieve a more comprehensive IBDV classification that can detect recombinants and reassortments. Here, we report the development and standardization of a tiled PCR amplicon protocol for the direct and cost-effective genome sequencing of global IBDV strains using next-generation technology. Primers for tiled PCR were designed with adapters to bypass expensive and time-consuming library preparation steps. Sequencing was performed on Illumina MiniSeq equipment, and fourteen complete genomes of field strains were assembled using reference sequences. The PCR-enrichment step was used to obtain genomes from low-titer biological samples that were difficult to amplify using traditional sequencing. Phylogenetic analyses of the obtained genomes confirmed previous strain classification. By combining the enrichment methodology with massive sequencing, it is possible to obtain IBDV genomic sequences in a fast and affordable manner. This procedure can be a valuable tool to better understand virus epidemiology.

Keywords: Avian; Genome evolution; Gumboro disease virus; Whole genome sequencing.

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Conflict of interest statement

Declaration of Competing Interest There is not any conflict of interest in this paper.

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