植物横纹肌病毒在其节肢动物螨载体中复制的证据。

IF 2.5 4区 医学 Q3 VIROLOGY Virus research Pub Date : 2025-01-01 DOI:10.1016/j.virusres.2024.199522
Hideki Kondo , Miki Fujita , Paul Telengech , Kazuyuki Maruyam , Kiwamu Hyodo , Aline Daniele Tassi , Ronald Ochoa , Ida Bagus Andika , Nobuhiro Suzuki
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引用次数: 0

摘要

植物病毒在昆虫媒介中复制的传播被称为持续繁殖方式。然而,目前尚不清楚这种病毒载体关系是否也发生在植物病毒和其他生物载体(如节肢动物螨)之间。本研究利用定量RT-qPCR、western blotting和新一代测序技术,研究了一种分段植物横纹肌病毒——兰花斑点病毒(orchid fleck virus, OFV)在其螨载体(Brevipalpus californicus s.l.)中的复制可能性。时间过程RT-qPCR和western blot分析显示,感染病毒后,螨虫体内的OFV积累呈增加趋势。由于OFV基因组表达需要转录聚腺苷化mrna,因此从毒螨样本和感染OFV的植物叶片中提取的聚腺苷化RNA片段用于RNA-seq分析。在螨和植物数据集中,大量的序列读段与OFV RNA1和RNA2对应转录病毒基因mrna的基因组区域对齐。这包括来自病毒基因组末端前导区和后导区的短聚腺苷化转录本,它们被认为在病毒转录/复制中起着至关重要的作用。相反,少量的reads被定位到非转录区域(基因连接)。这些结果强烈表明,OFV基因在螨虫和植物中都有表达。此外,深度测序揭示了螨虫中ofv衍生的小rna的积累,尽管它们的大小分布与植物中的不同。综上所述,我们的研究结果表明,OFV在螨载体内复制,并被rna沉默机制靶向。
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Evidence for the replication of a plant rhabdovirus in its arthropod mite vector
Transmission of plant viruses that replicate in the insect vector is known as persistent-propagative manner. However, it remains unclear whether such virus-vector relationships also occur between plant viruses and other biological vectors such as arthropod mites. In this study, we investigated the possible replication of orchid fleck virus (OFV), a segmented plant rhabdovirus, within its mite vector (Brevipalpus californicus s.l.) using quantitative RT-qPCR, western blotting and next-generation sequencing. Time-course RT-qPCR and western blot analyses showed an increasing OFV accumulation pattern in mites after virus acquisition. Since OFV genome expression requires the transcription of polyadenylated mRNAs, polyadenylated RNA fractions extracted from the viruliferous mite samples and OFV-infected plant leaves were used for RNA-seq analysis. In the mite and plant datasets, a large number of sequence reads were aligned to genomic regions of OFV RNA1 and RNA2 corresponding to transcribed viral gene mRNAs. This includes the short polyadenylated transcripts originating from the leader and trailer regions at the ends of the viral genome, which are believed to play a crucial role in viral transcription/replication. In contrast, a low number of reads were mapped to the non-transcribed regions (gene junctions). These results strongly suggested that OFV gene expression occurs both in mites and plants. Additionally, deep sequencing revealed the accumulation of OFV-derived small RNAs in mites, although their size profiles differ from those found in plants. Taken together, our results indicated that OFV replicates within a mite vector and is targeted by the RNA-silencing mechanism.
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来源期刊
Virus research
Virus research 医学-病毒学
CiteScore
9.50
自引率
2.00%
发文量
239
审稿时长
43 days
期刊介绍: Virus Research provides a means of fast publication for original papers on fundamental research in virology. Contributions on new developments concerning virus structure, replication, pathogenesis and evolution are encouraged. These include reports describing virus morphology, the function and antigenic analysis of virus structural components, virus genome structure and expression, analysis on virus replication processes, virus evolution in connection with antiviral interventions, effects of viruses on their host cells, particularly on the immune system, and the pathogenesis of virus infections, including oncogene activation and transduction.
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