The Three Essential Motifs in P0 for Suppression of RNA Silencing Activity of <i>Potato leafroll virus</i> Are Required for Virus Systemic Infection

oleh: Mamun-Or Rashid, Xiao-Yan Zhang, Ying Wang, Da-Wei Li, Jia-Lin Yu, Cheng-Gui Han

Format: Article
Diterbitkan: MDPI AG 2019-02-01

Deskripsi

Higher plants exploit posttranscriptional gene silencing as a defense mechanism against virus infection by the RNA degradation system. Plant RNA viruses suppress posttranscriptional gene silencing using their encoded proteins. Three important motifs (F-box-like motif, G139/W140/G141-like motif, and C-terminal conserved region) in P0 of <i>Potato leafroll virus</i> (PLRV) were reported to be essential for suppression of RNA silencing activity. In this study, <i>Agrobacterium-</i>mediated transient experiments were carried out to screen the available amino acid substitutions in the F-box-like motif and G139/W140/G141-like motif that abolished the RNA silencing suppression activity of P0, without disturbing the P1 amino acid sequence. Subsequently, four P0 defective mutants derived from a full-length cDNA clone of PLRV (L76F and W87R substitutions in the F-box-like motif, G139RRR substitution in the G139/W140/G141-like motif, and F220R substitution in the C-terminal conserved region) were successfully generated by reverse PCR and used to investigate the impact of these substitutions on PLRV infectivity. The RT-PCR and western blot analysis revealed that these defective mutants affected virus accumulation in inoculated leaves and systemic movement in <i>Nicotiana benthamiana</i> as well as in its natural hosts, potato and black nightshade. These results further demonstrate that the RNA silencing suppressor of PLRV is required for PLRV accumulation and systemic infection.