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A new full-length circular DNA sequencing method for viral-sized genomes reveals that RNAi transgenic plants provoke a shift in geminivirus populations in the field

机译:一种新的针对病毒大小基因组的全长环状DNA测序方法表明,RNAi转基因植物在田间引起双生病毒种群的转移

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We present a new method, CIDER-Seq (Circular DNA Enrichment sequencing) for the unbiased enrichment and long-read sequencing of viral-sized circular DNA molecules. We used CIDER-Seq to produce single-read full-length virus genomes for the first time. CIDER-Seq combines PCR-free virus enrichment with Single Molecule Real Time sequencing and a new sequence de-concatenation algorithm. We apply our technique to produce 1200 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 double-stranded RNA (dsRNA) in transgenic plants causes a consistent shift in virus populations towards species sharing low homology to the transgene derived dsRNA. Our method and its application in an economically important crop plant opens new possibilities in periodic virus sequence surveillance and accurate profiling of diverse circular DNA elements.
机译:我们提出了一种新方法,CIDER-Seq(环状DNA富集测序),用于病毒大小的环状DNA分子的无偏富集和长时测序。我们首次使用CIDER-Seq产生单读全长病毒基因组。 CIDER-Seq结合了无PCR病毒富集,单分子实时测序和新的序列取消串联算法。在肯尼亚的一项田间试验中,我们运用我们的技术从RNAi转基因植物和对照植物中产生了超过1200个全长,高精度双子病毒基因组。使用CIDER-Seq,我们可以首次证明转基因植物中抗病毒双链RNA(dsRNA)的表达引起病毒种群向与转基因衍生dsRNA同源性低的物种的一致转变。我们的方法及其在具有重要经济意义的农作物中的应用为定期病毒序列监测和各种环状DNA元素的准确分析提供了新的可能性。

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