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

机译:抑制马铃薯卷叶病毒RNA沉默活性的P0中的三个基本主题是病毒全身感染所必需的。

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摘要

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 Potato leafroll virus (PLRV) were reported to be essential for suppression of RNA silencing activity. In this study, Agrobacterium-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 Nicotiana benthamiana 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.
机译:高等植物利用转录后基因沉默作为抵抗RNA降解系统感染病毒的防御机制。植物RNA病毒使用其编码的蛋白抑制转录后基因沉默。据报道,马铃薯卷叶病毒(PLRV)的P0中有三个重要的基序(F-box-like基序,G139 / W140 / G141-like基序和C端保守区)对于抑制RNA沉默活性至关重要。在这项研究中,进行了农杆菌介导的瞬时实验,以筛选F-box样基序和G139 / W140 / G141样基序中可用的氨基酸取代,这些取代基取消了P0的RNA沉默抑制活性,而没有干扰P1氨基酸序列。随后,从PLRV的全长cDNA克隆(F-box-like基序中的L76F和W87R取代,G139 / W140 / G141-like基序中的G139RRR取代和C-末端保守区)是通过反向PCR成功产生的,并用于研究这些取代对PLRV感染性的影响。逆转录-聚合酶链反应和蛋白质印迹分析表明,这些有缺陷的突变体影响了本生烟草及其自然宿主,马铃薯和黑色茄属植物叶片中病毒的积累和系统运动。这些结果进一步证明PLRV的RNA沉默抑制剂是PLRV积累和全身感染所必需的。

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