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A new full-length virus genome sequencing method reveals that antiviral RNAi changes geminivirus populations in field-grown cassava

Authors :
Hervé Vanderschuren
Matthias Hirsch-Hoffmann
Andrea Patrignani
Wilhelm Gruissem
Mariam Were
Devang Mehta
Hassan Karakacha Were
Publication Year :
2017
Publisher :
Cold Spring Harbor Laboratory, 2017.

Abstract

Deep-sequencing of virus isolates using short-read sequencing technologies is problematic since viruses are often present in complexes sharing a high-degree of sequence identity. The full-length genomes of such highly-similar viruses cannot be assembled accurately from short sequencing reads. We present a new method, CIDER-Seq (Circular DNA Enrichment Sequencing) which successfully generates accurate full-length virus genomes from individual sequencing reads with no sequence assembly required. CIDER-Seq operates by combining a PCR-free, circular DNA enrichment protocol with Single Molecule Real Time sequencing and a new sequence deconcatenation algorithm. We apply our technique to produce more than 1,200 full-length, highly accurate geminivirus genomes from RNAi-transgenic and control plants in a field trial in Kenya. Using CIDER-Seq we can demonstrate for the first time that the expression of antiviral doublestranded RNA (dsRNA) in transgenic plants causes a consistent shift in virus populations towards species sharing low homology to the transgene derived dsRNA. Our results show that CIDER-seq is a powerful, cost-effective tool for accurately sequencing circular DNA viruses, with future applications in deep-sequencing other forms of circular DNA such as transposons and plasmids.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....b476e50f577c009d4dd00d2eec7fc9f6
Full Text :
https://doi.org/10.1101/168724