Council for Agricultural Research and Economics, Research Centre for Plant Protection and Certification, Via C.G. Bertero 22, 00156 Rome, Italy.
Department of Plant Protection, Warsaw University of Life Sciences, Nowoursynowska St. 159, 02-776 Warsaw, Poland.
Viruses. 2024 May 18;16(5):806. doi: 10.3390/v16050806.
Tomato fruit blotch virus (ToFBV) (, family ) was firstly identified in Italy in 2018 in tomato plants that showed the uneven, blotchy ripening and dimpling of fruits. Subsequent High-Throughput Sequencing (HTS) analysis allowed ToFBV to be identified in samples collected in Australia, Brazil, and several European countries, and its presence in tomato crops was dated back to 2012. In 2023, the virus was found to be associated with two outbreaks in Italy and Belgium, and it was included in the EPPO Alert list as a potential new threat for tomato fruit production. Many epidemiologic features of ToFBV need to be still clarified, including transmission. Massee (Acariformes: Eriophyoidea), the tomato russet mite (TRM), is a likely candidate vector, since high population densities were found in most of the ToFBV-infected tomato cultivations worldwide. Real-time RT-PCR tests for ToFBV detection and TRM identification were developed, also as a duplex assay. The optimized tests were then transferred to an RT-ddPCR assay and validated according to the EPPO Standard PM 7/98 (5). Such sensitive, reliable, and validated tests provide an important diagnostic tool in view of the probable threat posed by this virus-vector system to solanaceous crops worldwide and can contribute to epidemiological studies by simplifying the efficiency of research. To our knowledge, these are the first molecular methods developed for the simultaneous detection and identification of ToFBV and TRM.
番茄果实斑驳病毒(ToFBV)(,科)于 2018 年在意大利首次被鉴定出来,当时番茄植株的果实出现不均匀的斑驳成熟和起皱现象。随后的高通量测序(HTS)分析允许在澳大利亚、巴西和几个欧洲国家采集的样本中鉴定出 ToFBV,并追溯到 2012 年该病毒在番茄作物中的存在。2023 年,该病毒被发现与意大利和比利时的两次疫情有关,并被列入 EPPO 警报名单,作为番茄果实生产的一种潜在新威胁。ToFBV 的许多流行病学特征仍需阐明,包括传播方式。Massee(蜱螨目:Eriophyoidea),番茄红蜘蛛(TRM),是一个可能的候选媒介,因为在全球大多数感染 ToFBV 的番茄种植园中都发现了高密度的种群。已经开发了用于 ToFBV 检测和 TRM 鉴定的实时 RT-PCR 测试,也作为双重测定法。优化后的测试随后被转移到 RT-ddPCR 测试中,并根据 EPPO 标准 PM 7/98(5)进行了验证。鉴于该病毒-媒介系统对全球茄科作物可能构成的威胁,这些敏感、可靠和经过验证的测试提供了一个重要的诊断工具,并通过简化研究效率为流行病学研究做出贡献。据我们所知,这些是首次开发用于同时检测和鉴定 ToFBV 和 TRM 的分子方法。