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Analysis of Pineapple Mealybug Wilt Associated Virus -1 and -2 for Potential RNA Silencing Suppressors and Pathogenicity Factors

机译:菠萝Mealybug枯萎病相关病毒-1和-2对潜在的RNA沉默抑制子及致病因素的分析

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摘要

Higher plants use RNA silencing to defend against viral infections. As a counter defense, plant viruses have evolved proteins that suppress RNA silencing. Mealybug wilt of pineapple (MWP), an important disease of pineapple, has been associated with at least three distinct viruses, Pineapple mealybug wilt associated virus -1, -2, and -3 (PMWaV-1, -2, and -3). Selected open reading frames (ORFs) of PMWaV-1 and PMWaV-2 were screened for their local and systemic suppressor activities in Agrobacterium-mediated transient assays using green fluorescent protein (GFP) in Nicotiana benthamiana. Results indicate that PMWaV-2 utilizes a multiple-component RNA silencing suppression mechanism. Two proteins, p20 and CP, target both local and systemic silencing in N. benthamiana, while the p22 and CPd proteins target only systemic silencing. In the related virus PMWaV-1, we found that only one of the encoded proteins, p61, had only systemic suppressor activity. Of all the proteins tested from both viruses, only the PMWaV-2 p20 protein suppressed local silencing induced by double-stranded RNA (dsRNA), but only when low levels of inducing dsRNA were used. None of the proteins analyzed could interfere with the short distance spread of silencing. We examined the mechanism of systemic suppression activity by investigating the effect of PMWaV-2-encoded p20 and CP proteins on secondary siRNAs. Our results suggest that the PMWaV-2 p20 and CP proteins block the systemic silencing signal by repressing production of secondary siRNAs. We also demonstrate that the PMWaV-2 p20 and p22 proteins enhanced the pathogenicity of Potato virus X in N. benthamiana.
机译:高等植物利用RNA沉默来防御病毒感染。作为防御,植物病毒已经进化出抑制RNA沉默的蛋白质。菠萝的a虫(MWP)是一种重要的菠萝疾病,已与至少三种不同的病毒相关联,即菠萝粉虱bug虫相关病毒-1,-2和-3(PMWaV-1,-2和-3) 。使用本底烟草中的绿色荧光蛋白(GFP),在农杆菌介导的瞬时分析中,筛选了PMWaV-1和PMWaV-2的选定开放阅读框(ORF)的局部和全身抑制活性。结果表明,PMWaV-2利用了多组分RNA沉默抑制机制。 p20和CP两种蛋白质均靶向本氏烟草中的局部沉默和全身沉默,而p22和CPd蛋白质仅靶向全身沉默。在相关病毒PMWaV-1中,我们发现只有一种编码的蛋白质p61仅具有系统抑制活性。在两种病毒测试的所有蛋白质中,只有PMWaV-2 p20蛋白质可抑制双链RNA(dsRNA)诱导的局部沉默,但仅当使用低水平的dsRNA诱导时才如此。分析的任何蛋白质都不会干扰沉默的短距离传播。我们通过研究PMWaV-2编码的p20和CP蛋白对次级siRNA的作用,研究了全身抑制活性的机制。我们的结果表明,PMWaV-2 p20和CP蛋白通过抑制次级siRNA的产生来阻断系统沉默信号。我们还证明了PMWaV-2 p20和p22蛋白增强了本氏烟草中马铃薯X的致病性。

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