Defense Responses Induced by Viral Movement Protein and Its Nuclear Localization Modulate Virus Cell-to-Cell Transport

Plants Pub Date : 2024-09-11 DOI:10.3390/plants13182550
Anastasia K. Atabekova, Ekaterina A. Lazareva, Alexander A. Lezzhov, Sergei A. Golyshev, Boris I. Skulachev, Sergey Y. Morozov, Andrey G. Solovyev
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Abstract

Movement proteins (MPs) encoded by plant viruses are essential for cell-to-cell transport of viral genomes through plasmodesmata. The genome of hibiscus green spot virus contains a module of two MP genes termed ‘binary movement block’ (BMB), encoding the proteins BMB1 and BMB2. Here, BMB1 is shown to induce a defense response in Nicotiana benthamiana plants that inhibits BMB-dependent virus transport. This response is characterized by the accumulation of reactive oxygen species, callose deposition in the cell wall, and upregulation of 9-LOX expression. However, the BMB1-induced response is inhibited by coexpression with BMB2. Furthermore, BMB1 is found to localize to subnuclear structures, in particular to Cajal bodies, in addition to the cytoplasm. As shown in experiments with a BMB1 mutant, the localization of BMB1 to nuclear substructures enhances BMB-dependent virus transport. Thus, the virus transport mediated by BMB proteins is modulated by (i) a BMB1-induced defense response that inhibits transport, (ii) suppression of the BMB1-induced response by BMB2, and (iii) the nuclear localization of BMB1 that promotes virus transport. Collectively, the data presented demonstrate multiple levels of interactions between viral pathogens and their plant hosts during virus cell-to-cell transport.
病毒运动蛋白诱导的防御反应及其核定位调节病毒的细胞间转运
植物病毒编码的运动蛋白(MPs)是病毒基因组通过质膜进行细胞间运输的必要条件。木槿绿斑病毒的基因组包含两个 MP 基因模块,称为 "二元运动阻滞"(BMB),分别编码 BMB1 和 BMB2 蛋白。 研究表明,BMB1 可诱导烟草植物产生防御反应,抑制 BMB 依赖性病毒运输。这种反应的特征是活性氧的积累、细胞壁中胼胝质的沉积以及 9-LOX 表达的上调。然而,与 BMB2 共表达会抑制 BMB1 诱导的反应。此外,还发现 BMB1 除了在细胞质中定位外,还定位在核下结构中,特别是 Cajal 小体中。正如用 BMB1 突变体进行的实验所显示的,BMB1 定位于核亚结构会增强 BMB 依赖性病毒转运。因此,BMB 蛋白介导的病毒转运受以下因素调节:(i) BMB1 诱导的防御反应抑制转运;(ii) BMB2 抑制 BMB1 诱导的反应;(iii) BMB1 的核定位促进病毒转运。总之,这些数据证明了病毒病原体与其植物宿主在病毒细胞间转运过程中的多层次相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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