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Complete genomic sequence of a Rubus yellow net virus isolate and detection of genome-wide pararetrovirus-derived small RNAs

机译:悬钩子黄网病毒分离株的完整基因组序列和全基因组副逆转录病毒来源的小RNA的检测

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摘要

Rubus yellow net virus (RYNV) was cloned and sequenced from a red raspberry (Rubus idaeus L.) plant exhibiting symptoms of mosaic and mottling in the leaves. Its genomic sequence indicates that it is a distinct member of the genus Badnavirus, with 7932. bp and seven ORFs, the first three corresponding in size and location to the ORFs found in the type member Commelina yellow mottle virus. Bioinformatic analysis of the genomic sequence detected several features including nucleic acid binding motifs, multiple zinc finger-like sequences and domains associated with cellular signaling. Subsequent sequencing of the small RNAs (sRNAs) from RYNV-infected R. idaeus leaf tissue was used to determine any RYNV sequences targeted by RNA silencing and identified abundant virus-derived small RNAs (vsRNAs). The majority of the vsRNAs were 22-nt in length. We observed a highly uneven genome-wide distribution of vsRNAs with strong clustering to small defined regions distributed over both strands of the RYNV genome. Together, our data show that sequences of the aphid-transmitted pararetrovirus RYNV are targeted in red raspberry by the interfering RNA pathway, a predominant antiviral defense mechanism in plants. © 2013.
机译:从红树莓(Rubus idaeus L.)植物中克隆并测序出悬钩子黄净病毒(RYNV),该植物表现出在叶中出现花叶和斑驳的症状。它的基因组序列表明它是Badnavirus属的一个独特成员,具有7932. bp和七个ORF,前三个在大小和位置上均与Commelina黄斑驳病毒类型成员中的ORF相对应。基因组序列的生物信息学分析检测到几个特征,包括核酸结合基序,多个锌指样序列和与细胞信号转导相关的结构域。随后对来自RYNV感染的大叶黄杨叶片组织的小RNA(sRNA)进行测序,以确定通过RNA沉默靶向的任何RYNV序列,并鉴定出大量的病毒衍生小RNA(vsRNA)。大多数vsRNA的长度为22-nt。我们观察到vsRNA的高度不均匀的全基因组分布,并且强烈聚集到RYNV基因组的两条链上的较小定义区域。总之,我们的数据表明,蚜虫传播的副逆转录病毒RYNV的序列是通过干扰RNA途径(植物中的主要抗病毒防御机制)靶向红树莓的。 ©2013。

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