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The Luteovirus P4 Movement Protein Is a Suppressor of Systemic RNA Silencing

机译:黄体病毒P4运动蛋白是系统性RNA沉默的抑制因子。

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摘要

The plant viral family Luteoviridae is divided into three genera: Luteovirus, Polerovirus and Enamovirus. Without assistance from another virus, members of the family are confined to the cells of the host plant’s vascular system. The first open reading frame (ORF) of poleroviruses and enamoviruses encodes P0 proteins which act as silencing suppressor proteins (VSRs) against the plant’s viral defense-mediating RNA silencing machinery. Luteoviruses, such as barley yellow dwarf virus-PAV (BYDV-PAV), however, have no P0 to carry out the VSR role, so we investigated whether other proteins or RNAs encoded by BYDV-PAV confer protection against the plant’s silencing machinery. Deep-sequencing of small RNAs from plants infected with BYDV-PAV revealed that the virus is subjected to RNA silencing in the phloem tissues and there was no evidence of protection afforded by a possible decoy effect of the highly abundant subgenomic RNA3. However, analysis of VSR activity among the BYDV-PAV ORFs revealed systemic silencing suppression by the P4 movement protein, and a similar, but weaker, activity by P6. The closely related BYDV-PAS P4, but not the polerovirus potato leafroll virus P4, also displayed systemic VSR activity. Both luteovirus and the polerovirus P4 proteins also showed transient, weak local silencing suppression. This suggests that systemic silencing suppression is the principal mechanism by which the luteoviruses BYDV-PAV and BYDV-PAS minimize the effects of the plant’s anti-viral defense.
机译:植物病毒黄体病毒科分为三个属:黄体病毒,脊髓灰质炎病毒和Enamovirus。在没有其他病毒帮助的情况下,该家族成员被限制在宿主植物血管系统的细胞内。杆状病毒和Enamoviruses的第一个开放阅读框(ORF)编码P0蛋白,其作为针对植物病毒介导的RNA沉默机制的沉默抑制蛋白(VSR)。然而,诸如大麦黄矮病毒-PAV(BYDV-PAV)等黄病毒没有P0来发挥VSR的作用,因此我们研究了BYDV-PAV编码的其他蛋白质或RNA是否具有针对植物沉默机制的保护作用。从BYDV-PAV感染的植物中提取的小RNA进行了深度测序,结果表明该病毒在韧皮部组织中受到了RNA沉默,而且没有证据表明高度丰富的亚基因组RNA3可能具有诱饵作用。然而,对BYDV-PAV ORF中VSR活性的分析显示,P4运动蛋白可抑制系统性沉默,而P6活性则类似但较弱。密切相关的BYDV-PAS P4,而不是极地病毒马铃薯卷叶病毒P4,也显示出全身性VSR活性。黄病毒和极点病毒P4蛋白也都显示出短暂的,弱的局部沉默抑制。这表明系统沉默抑制是黄体病毒BYDV-PAV和BYDV-PAS最小化植物抗病毒防御作用的主要机制。

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