Mohamed Atef, Jin Zhenhui, Osman Toba, Shi Nongnong, Tör Mahmut, Jackson Stephen, Hong Yiguo
School of Life Sciences, University of Warwick, Coventry CV4 7AL, UK.
Department of Botany, Faculty of Agriculture, Fayoum University, Fayoum 63514, Egypt.
Biology (Basel). 2022 May 6;11(5):714. doi: 10.3390/biology11050714.
A hallmark of antiviral RNA interference (RNAi) is the production of viral small interfering RNA (vsiRNA). Profiling of vsiRNAs indicates that certain regions of viral RNA genome or transcribed viral RNA, dubbed vsiRNA hotspots, are more prone to RNAi-mediated cleavage for vsiRNA biogenesis. However, the biological relevance of hotspot vsiRNAs to the host innate defence against pathogens remains to be elucidated. Here, we show that direct targeting a hotspot by a synthetic vsiRNA confers host resistance to virus infection. Using Northern blotting and RNAseq, we obtained a profile of vsiRNAs of the African cassava mosaic virus (ACMV), a single-stranded DNA virus. Sense and anti-sense strands of small RNAs corresponding to a hotspot and a coldspot vsiRNA were synthesised. Co-inoculation of with the double-stranded hotspot siRNA protected plants from ACMV infection, where viral DNA replication and accumulation of viral mRNA were undetectable. The sense or anti-sense strand of this hotspot vsiRNA, and the coldspot vsiRNA in both double-stranded and single-stranded formats possessed no activity in viral protection. We further demonstrated that the hotspot vsiRNA-mediated virus resistance had a threshold effect and required an active . These data show that hotspot vsiRNAs bear a functional significance on antiviral RNAi, suggesting that they may have the potential as an exogenous protection agent for controlling destructive viral diseases in plants.
抗病毒RNA干扰(RNAi)的一个标志是病毒小干扰RNA(vsiRNA)的产生。vsiRNA分析表明,病毒RNA基因组或转录的病毒RNA的某些区域,即所谓的vsiRNA热点,更容易受到RNAi介导的切割以进行vsiRNA生物合成。然而,热点vsiRNA与宿主对病原体的先天防御的生物学相关性仍有待阐明。在这里,我们表明通过合成vsiRNA直接靶向热点可赋予宿主对病毒感染的抗性。使用Northern印迹和RNAseq,我们获得了非洲木薯花叶病毒(ACMV)(一种单链DNA病毒)的vsiRNA图谱。合成了与热点和冷点vsiRNA相对应的小RNA的正义链和反义链。用双链热点siRNA共同接种可保护植物免受ACMV感染,在这种情况下,无法检测到病毒DNA复制和病毒mRNA的积累。该热点vsiRNA的正义链或反义链以及双链和单链形式的冷点vsiRNA在病毒保护中均无活性。我们进一步证明,热点vsiRNA介导的病毒抗性具有阈值效应,并且需要活性。这些数据表明热点vsiRNA在抗病毒RNAi中具有功能意义,表明它们可能具有作为控制植物中破坏性病毒疾病的外源保护剂的潜力。