Lotos Leonidas, Katsiani Asimina, Katis Nikolaos I, Maliogka Varvara I
Plant Pathology Laboratory, School of Agriculture, Faculty of Agriculture, Forestry and Natural Environment, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Plants (Basel). 2024 Jan 17;13(2):264. doi: 10.3390/plants13020264.
Cherry virus F (CVF) is a newly emerged sweet cherry virus. CVF has been identified in a small number of countries and it has not been associated with discrete symptomatology. RNA silencing is a natural defense mechanism of plants against invaders that degrades viral RNA in a sequence-specific manner. As a counter-defense, plant viruses encode one or more RNA silencing suppressors (RSSs) interfering with the silencing pathway via several mechanisms. To identify putative RSSs, the three proteins (MP, CPL, CPS) encoded by the RNA2 of CVF were selected and separately cloned into the binary vector pART27. The clones were used for transient expression experiments in leaves, using co-agroinfiltration with a GFP-expressing vector. In both CPL and CPS, a rapid decrease in fluorescence was recorded, comparable to the negative control, whereas the MP of CVF retained the GFP's fluorescence for a few days longer even though this was observed in a small number of infiltrated leaves. Further experiments have shown that the protein was not able to inhibit the cell-to-cell spread of the silencing signal; however, a putative interference with systemic silencing was recorded especially when the induction was carried out with double-stranded GFP RNA. Overall, our results indicate that the MP of CVF is putatively implicated in the suppression of RNA silencing, though further experimentation is needed to unveil the exact mode of action.
樱桃病毒F(CVF)是一种新出现的甜樱桃病毒。CVF已在少数国家被发现,且尚未发现其与特定症状相关。RNA沉默是植物抵御入侵者的一种天然防御机制,它以序列特异性方式降解病毒RNA。作为一种反防御机制,植物病毒编码一种或多种RNA沉默抑制子(RSS),通过多种机制干扰沉默途径。为了鉴定潜在的RSS,选择了CVF的RNA2编码的三种蛋白质(MP、CPL、CPS),并分别克隆到二元载体pART27中。这些克隆用于叶片中的瞬时表达实验,与表达GFP的载体进行共农杆菌浸润。在CPL和CPS中,均记录到荧光迅速下降,与阴性对照相当,而CVF的MP即使在少数浸润叶片中观察到,也能使GFP的荧光保留几天。进一步的实验表明,该蛋白不能抑制沉默信号的细胞间传播;然而,尤其是在用双链GFP RNA进行诱导时,记录到了对系统性沉默的潜在干扰。总体而言,我们的结果表明,CVF的MP可能参与了RNA沉默的抑制,尽管还需要进一步的实验来揭示其确切作用方式。