Kwak Myeonghwan, Troiano Elisa, Kil Eui-Joon, Parrella Giuseppe
Department of Plant Medicals, Andong National University, Andong, Republic of Korea.
Institute for Sustainable Plant Protection, National Research Council, Portici, Italy.
Front Plant Sci. 2024 Aug 22;15:1435611. doi: 10.3389/fpls.2024.1435611. eCollection 2024.
In this study, total RNA high-throughput sequencing (HTS) of a single symptomatic plant enabled the obtention of a nearly complete genome of two new isolates of turnip yellows virus (TuYV), named TuYV-ITA1 and TuYV-ITA2, and revealed a mixed infection with a new variant of citrus exocortis viroid (CEVd), named CEVd-ITA1. The TuYV-ITA2 isolate diverged from the known virus isolates of TuYV and showed variability in the P0 and P5 readthrough domain. Recombination analysis revealed its recombinant nature between TuYV and an unidentified polerovirus. The putative recombination event was identified in the P5 readthrough domain of the TuYMV-ITA2 isolate. Our results thus represent the first report of TuYV in Italy and some molecular evidence for the possible natural co-existence of TuYV and CEVd in a new natural host for both infectious entities. This study is adding further knowledge about the role of weed plants as virus reservoirs, and thus additional biological and impact studies would be desirable to determine in particular the role of in the spread of TuYV and if this virus should be considered a new threat for the susceptible Italian crops.
在本研究中,对一株有症状的单一植物进行总RNA高通量测序(HTS),获得了芜菁黄化病毒(TuYV)两个新分离株的近乎完整的基因组,分别命名为TuYV - ITA1和TuYV - ITA2,并揭示了其与一种名为CEVd - ITA1的柑橘裂皮类病毒新变体的混合感染。TuYV - ITA2分离株与已知的TuYV病毒分离株不同,在P0和P5通读结构域表现出变异性。重组分析揭示了它在TuYV和一种未鉴定的马铃薯Y病毒属病毒之间的重组性质。在TuYMV - ITA2分离株的P5通读结构域鉴定出了推定的重组事件。因此,我们的结果代表了意大利TuYV的首次报道,以及TuYV和CEVd在这两种感染性实体的新自然宿主中可能自然共存的一些分子证据。本研究进一步增加了关于杂草植物作为病毒储存库作用的知识,因此需要进行更多的生物学和影响研究,以特别确定杂草在TuYV传播中的作用,以及这种病毒是否应被视为意大利易感作物的新威胁。