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同时感染多种病毒及其基因型的草莓植株中病毒衍生的小干扰RNA分析

Analysis of Virus-Derived siRNAs in Strawberry Plants Co-Infected with Multiple Viruses and Their Genotypes.

作者信息

Koloniuk Igor, Matyášová Alena, Brázdová Sára, Veselá Jana, Přibylová Jaroslava, Várallyay Eva, Fránová Jana

机构信息

Institute of Plant Molecular Biology, Department of Plant Virology, Biology Centre CAS, 370 05 Ceske Budejovice, Czech Republic.

Faculty of Agriculture, University of South Bohemia, 370 05 Ceske Budejovice, Czech Republic.

出版信息

Plants (Basel). 2023 Jul 6;12(13):2564. doi: 10.3390/plants12132564.

Abstract

Plants can be infected with multiple viruses. High-throughput sequencing tools have enabled numerous discoveries of multi-strain infections, when more than one viral strain or divergent genomic variant infects a single plant. Here, we investigated small interfering RNAs (siRNAs) in a single strawberry plant co-infected with several strains of strawberry mottle virus (SMoV), strawberry crinkle virus (SCV) and strawberry virus 1 (StrV-1). A range of plants infected with subsets of the initial viral species and strains that were obtained by aphid-mediated transmission were also evaluated. Using high-throughput sequencing, we characterized the small RNA fractions associated with different genotypes of these three viruses and determined small RNA hotspot regions in viral genomes. A comparison of virus-specific siRNA (vsiRNA) abundance with relative viral concentrations did not reveal any consistent agreement. Strawberry mottle virus strains exhibiting considerable variations in concentrations were found to be associated with comparable quantities of vsiRNAs. Additionally, by estimating the specificity of siRNAs to different viral strains, we observed that a substantial pool of vsiRNAs could target all SMoV strains, while strain-specific vsiRNAs predominantly targeted rhabdoviruses, SCV and StrV-1. This highlights the intricate nature and potential interference of the antiviral response within a single infected plant when multiple viruses are present.

摘要

植物可能会被多种病毒感染。高通量测序工具使得人们发现了大量多毒株感染的情况,即不止一种病毒毒株或不同的基因组变体感染同一株植物。在此,我们研究了一株同时感染了几种草莓斑驳病毒(SMoV)、草莓皱缩病毒(SCV)和草莓病毒1(StrV-1)的草莓植株中的小干扰RNA(siRNA)。还评估了一系列通过蚜虫介导传播获得的、感染了初始病毒种类和毒株子集的植物。利用高通量测序,我们对与这三种病毒不同基因型相关的小RNA组分进行了表征,并确定了病毒基因组中的小RNA热点区域。病毒特异性siRNA(vsiRNA)丰度与相对病毒浓度的比较未发现任何一致的相关性。发现浓度有显著差异的草莓斑驳病毒毒株与相当数量的vsiRNA相关。此外,通过估计siRNA对不同病毒毒株的特异性,我们观察到大量的vsiRNA可以靶向所有SMoV毒株,而毒株特异性vsiRNA主要靶向弹状病毒、SCV和StrV-1。这突出了单一感染植物中存在多种病毒时抗病毒反应的复杂性和潜在干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dda2/10346599/835b3bff4bdc/plants-12-02564-g001.jpg

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