Tian Yimin, Fei Jing, Luo Jinyan, Chen Lei, Ye Jun, Du Wei, Yu Cui
Technical Center for Animal, Plant and Food Inspection and Quarantine of Shanghai Customs District, Shanghai 200135, China.
Technical Center for Industrial Product and Raw Material Inspection and Testing, Shanghai Customs District, Shanghai 200135, China.
Heliyon. 2022 Dec 26;9(2):e12643. doi: 10.1016/j.heliyon.2022.e12643. eCollection 2023 Feb.
(CGMMV) is a re-emerging threat to the production of greenhouse cucumber and other Cucurbitaceae crops worldwide. This seed-borne virus can easily spread from a contaminated seed to seedlings and adjacent plants by mechanical contact between the foliage of diseased and healthy plants, causing extensive yield losses. An accurate method for detecting and quantifying this virus is urgently needed to ensure the safety of the global seed trade. Here, we report the development of a reverse-transcription droplet digital polymerase chain reaction (RT-ddPCR)-based method for specific and high-sensitive detection of CGMMV. By testing three primer-probe sets and optimizing reaction conditions, we showed that the newly developed RT-ddPCR method is highly specific and sensitive, with a detection limit of 1 fg/μL (0.39 copy/μL). The sensitivity of the RT-ddPCR method was compared with that of real-time fluorescence quantitative RT-PCR (RT-qPCR) using a series of plasmid dilutions and total RNAs extracted from infected cucumber seeds, and the detection limit of RT-ddPCR was 10 times higher than RT-qPCR with plasmid dilutions and 100 times higher than RT-qPCR for detecting CGMMV from infected cucumber seeds. The RT-ddPCR method was further assessed for detecting CGMMV from a total of 323 samples of Cucurbitaceae seeds, seedlings, and fruits as compared with the RT-qPCR method. We found that the infection rate of CGMMV on symptomatic fruits was as high as 100%, whereas infection rates were lower for seeds and lowest for seedlings. Notably, the results of two methods in detecting CGMMV from different cucurbit tissues showed the high consistency with Kappa value from 0.84 to 1.0, demonstrating that the newly developed RT-ddPCR method is highly reliable and practically useful for large-scale CGMMV detection and quantification.
黄瓜绿斑驳花叶病毒(CGMMV)对全球温室黄瓜及其他葫芦科作物的生产再次构成威胁。这种种传病毒可通过病株与健株叶片之间的机械接触,轻易地从受污染种子传播至幼苗及邻近植株,导致产量大幅损失。迫切需要一种准确检测和定量该病毒的方法,以确保全球种子贸易的安全。在此,我们报告了一种基于逆转录液滴数字聚合酶链反应(RT-ddPCR)的方法,用于特异性和高灵敏度检测CGMMV。通过测试三组引物-探针并优化反应条件,我们发现新开发的RT-ddPCR方法具有高度特异性和灵敏度,检测限为1 fg/μL(0.39拷贝/μL)。使用一系列质粒稀释液和从感染黄瓜种子中提取的总RNA,将RT-ddPCR方法的灵敏度与实时荧光定量RT-PCR(RT-qPCR)进行比较,结果显示,对于质粒稀释液,RT-ddPCR的检测限比RT-qPCR高10倍;对于从感染黄瓜种子中检测CGMMV,RT-ddPCR的检测限比RT-qPCR高100倍。与RT-qPCR方法相比,进一步评估了RT-ddPCR方法对总共323份葫芦科种子、幼苗和果实样本中CGMMV的检测能力。我们发现,CGMMV在有症状果实上的感染率高达100%,而种子的感染率较低,幼苗的感染率最低。值得注意的是,两种方法在检测不同葫芦科组织中CGMMV的结果显示出高度一致性,Kappa值在0.84至1.0之间,表明新开发的RT-ddPCR方法高度可靠,在大规模CGMMV检测和定量中具有实际应用价值。