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首页> 外文期刊>Annals of Applied Biology >Detection of multiple sequence variants of Grapevine rupestris stem pitting-associated virus using primers targeting the polymerase domain and partial genome sequencing of a novel variant
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Detection of multiple sequence variants of Grapevine rupestris stem pitting-associated virus using primers targeting the polymerase domain and partial genome sequencing of a novel variant

机译:使用靶向聚合酶结构域的引物和部分新基因变异的部分基因组测序,检测木贼干点蚀相关病毒的多个序列变异

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Grapevine rupestris stem pitting-associated virus (GRSPaV) is a member of the genus Foveavirus within the new family Betaflexiviridae. GRSPaV is distributed among grapevines worldwide and is implicated in the disease rupestris stem pitting (RSP) of the rugose wood complex and two other disorders. GRSPaV is composed of a wide range of sequence variants, and so far, the complete genomes of five sequence variants have been sequenced. Quick and reliable detection of different GRSPaV variants is a critical step in the elimination and control of GRSPaV. Previously, primers designed from various genomic regions have been used in RT-PCR for the detection of GRSPaV variants. The efficiency of RT-PCR varied widely depending on the spectrum of the primers that were used. In this study, we designed a pair of degenerate primers based on the consensus sequence of the genomic region encoding the highly conserved RNA-dependent RNA polymerase domain from five reference isolates of GRSPaV for which the genome sequence are available. We demonstrate that this set of primers is comparable, if not superior, to the broad-spectrum primers RSP13&14 in detecting multiple GRSPaV variants. Using these degenerate primers, we identified two new and distinct sequence variants. The 3′ terminal genomic region of one of the new variants, GRSPaV-ML, spanning the 3′ part of ORF1, through the entire open reading frames 2–4, and the 5′ region of ORF5 were sequenced. Sequence comparison demonstrates that GRSPaV-ML is distinct from each of the five reference isolates.
机译:葡萄藤茎点蚀相关病毒(GRSPaV)是新家族Betaflexiviridae的凹窝病毒属的成员。 GRSPaV分布在世界各地的葡萄藤中,与皱纹木复合体的卢氏干茎凹陷(RSP)病和其他两种疾病有关。 GRSPaV由多种序列变体组成,到目前为止,已对五个序列变体的完整基因组进行了测序。快速可靠地检测不同的GRSPaV变异体是消除和控制GRSPaV的关键步骤。以前,从各种基因组区域设计的引物已用于RT-PCR中以检测GRSPaV变异体。 RT-PCR的效率因所用引物的光谱而异。在这项研究中,我们基于可编码基因组序列的五个参考分离株GRSPaV编码高度保守的RNA依赖性RNA聚合酶结构域的基因组区域的共有序列,设计了一对简并引物。我们证明,在检测多个GRSPaV变异体时,这套引物与广谱引物RSP13&14具有可比性,即使不是更好。使用这些简并引物,我们鉴定了两个新的和不同的序列变体。新变体之一GRSPaV-ML的3'末端基因组区域跨ORF1的3'部分,贯穿整个开放阅读框2-4,并对ORF5的5'区域进行了测序。序列比较表明,GRSPaV-ML与五个参考分离物中的每一个都不同。

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