Department of Agricultural Sciences, Faculty of Agriculture and Forestry, University of Helsinki, 00014 Helsinki, Finland.
Department of Microbiology, Faculty of Agriculture and Forestry, University of Helsinki, 00014 Helsinki, Finland.
Viruses. 2024 Oct 15;16(10):1611. doi: 10.3390/v16101611.
The replication system explores the concept of separating the viral RNA involved in the translation of the replicase protein from the replication of the viral genome and has been successfully used to study the replication mechanisms of alphaviruses. We tested the feasibility of this system with potato virus X (PVX), an alpha-like virus, . A viral RNA template was designed which does not produce the replicase and prevents virion formation but remains recognizable by the replicase. The replicase construct encodes for the replicase protein, while lacking other virus-specific recognition sequences. Both the constructs were delivered into leaves via -mediated infiltration. Templates of various lengths were tested, with the longer templates not replicating at 4 and 6 days post inoculation, when the replicase protein was provided . Co-expression of helper component proteinase with the short template led to its replication. The cells where replication had been initiated were observed to be scattered across the leaf lamina. This study established that PVX is capable of -replicating and can likely be further optimized, and that the experimental freedom offered by the system can be utilized to delve deeper into understanding the replication mechanism of the virus.
复制系统探讨了将参与复制酶蛋白翻译的病毒 RNA 与病毒基因组复制分离的概念,并已成功用于研究甲病毒的复制机制。我们用马铃薯 X 病毒(PVX),一种类似甲病毒的病毒,来测试该系统的可行性。设计了一种不产生复制酶并阻止病毒形成但仍能被复制酶识别的病毒 RNA 模板。复制酶构建体编码复制酶蛋白,同时缺乏其他病毒特异性识别序列。通过介导的浸润将两种构建体递送到 叶片中。测试了各种长度的模板,较长的模板在接种后 4 天和 6 天未复制,此时提供了复制酶蛋白。与短模板共表达辅助蛋白水解酶导致其复制。观察到起始复制的细胞散布在叶片薄片中。这项研究表明,PVX 能够进行 -复制,并且可能进一步得到优化,并且该系统提供的实验自由度可用于更深入地了解病毒的复制机制。