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Extreme Resistance as a Host Counter-counter Defense against Viral Suppression of RNA Silencing

机译:极端抗性作为对抗病毒沉默RNA沉默的宿主抗药性。

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摘要

RNA silencing mediated by small RNAs (sRNAs) is a conserved regulatory process with key antiviral and antimicrobial roles in eukaryotes. A widespread counter-defensive strategy of viruses against RNA silencing is to deploy viral suppressors of RNA silencing (VSRs), epitomized by the P19 protein of tombusviruses, which sequesters sRNAs and compromises their downstream action. Here, we provide evidence that specific Nicotiana species are able to sense and, in turn, antagonize the effects of P19 by activating a highly potent immune response that protects tissues against Tomato bushy stunt virus infection. This immunity is salicylate- and ethylene-dependent, and occurs without microscopic cell death, providing an example of “extreme resistance” (ER). We show that the capacity of P19 to bind sRNA, which is mandatory for its VSR function, is also necessary to induce ER, and that effects downstream of P19-sRNA complex formation are the likely determinants of the induced resistance. Accordingly, VSRs unrelated to P19 that also bind sRNA compromise the onset of P19-elicited defense, but do not alter a resistance phenotype conferred by a viral protein without VSR activity. These results show that plants have evolved specific responses against the damages incurred by VSRs to the cellular silencing machinery, a likely necessary step in the never-ending molecular arms race opposing pathogens to their hosts.
机译:小RNA(sRNA)介导的RNA沉默是一种保守的调控过程,在真核生物中具有关键的抗病毒和抗菌作用。病毒针对RNA沉默的一种广泛的反防御策略是部署RNA沉默(VSR)的病毒抑制剂,这种病毒抑制剂的特点是通过弓形病毒的P19蛋白来隔离sRNA,并损害其下游作用。在这里,我们提供了证据,表明特定的烟草种能够通过激活能够保护组织免受番茄丛生的特技病毒感染的强效免疫应答,从而感知并拮抗P19的作用。这种免疫是水杨酸酯和乙烯依赖性的,并且在没有微观细胞死亡的情况下发生,提供了“极端耐药性”(ER)的实例。我们表明,P19结合sRNA的能力(对于其VSR功能是强制性的)也是诱导ER所必需的,并且P19-sRNA复合物形成下游的影响可能是诱导抗性的决定因素。因此,与P19无关的也与sRNA结合的VSR损害了P19引起的防御的发作,但是不改变没有VSR活性的病毒蛋白赋予的抗性表型。这些结果表明,植物已经进化出针对VSR对细胞沉默机制造成的损害的特异性反应,这是永无休止的分子军备与病原体对抗宿主的必不可少的步骤。

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