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The Capsid Protein of Turnip Crinkle Virus Overcomes Two Separate Defense Barriers To Facilitate Systemic Movement of the Virus in Arabidopsis

机译:萝卜皱纹病毒的衣壳蛋白克服了两个单独的防御屏障以促进病毒在拟南芥中的系统运动。

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摘要

The capsid protein (CP) of Turnip crinkle virus (TCV) is a multifunctional protein needed for virus assembly, suppression of RNA silencing-based antiviral defense, and long-distance movement in infected plants. In this report, we have examined genetic requirements for the different functions of TCV CP and evaluated the interdependence of these functions. A series of TCV mutants containing alterations in the CP coding region were generated. These alterations range from single-amino-acid substitutions and domain truncations to knockouts of CP translation. The latter category also contained two constructs in which the CP coding region was replaced by either the cDNA of a silencing suppressor of a different virus or that of green fluorescent protein. These mutants were used to infect Arabidopsis plants with diminished antiviral silencing capability (dcl2 dcl3 dcl4 plants). There was a strong correlation between the ability of mutants to reach systemic leaves and the silencing suppressor activity of mutant CP. Virus particles were not essential for entry of the viral genome into vascular bundles in the inoculated leaves in the absence of antiviral silencing. However, virus particles were necessary for egress of the viral genome from the vasculature of systemic leaves. Our experiments demonstrate that TCV CP not only allows the viral genome to access the systemic movement channel through silencing suppression but also ensures its smooth egress by way of assembled virus particles. These results illustrate that efficient long-distance movement of TCV requires both functions afforded by the CP.
机译:芜菁皱纹病毒(TCV)的衣壳蛋白(CP)是病毒组装,抑制基于RNA沉默的抗病毒防御以及在受感染植物中长距离运动所需的多功能蛋白。在本报告中,我们检查了TCV CP不同功能的遗传要求,并评估了这些功能的相互依赖性。产生了一系列在CP编码区中含有改变的TCV突变体。这些改变的范围从单氨基酸取代和结构域截断到CP翻译的敲除。后一类还包含两个构建体,其中CP编码区被另一种病毒的沉默抑制子的cDNA或绿色荧光蛋白的沉默抑制子的cDNA代替。这些突变体用于感染抗病毒沉默能力减弱的拟南芥植物(dcl2 dcl3 dcl4植物)。突变体到达全身叶片的能力与突变体CP的沉默抑制活性之间存在很强的相关性。在没有抗病毒沉默的情况下,病毒颗粒对于病毒基因组进入已接种叶片中的维管束不是必需的。然而,病毒颗粒对于从全身叶片的脉管系统中排出病毒基因组是必需的。我们的实验表明,TCV CP不仅允许病毒基因组通过沉默抑制进入全身运动通道,而且还可以通过组装的病毒颗粒确保其顺利流出。这些结果说明,TCV的有效长距离运动需要CP提供的两种功能。

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