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A novel method for transmitting southern rice black-streaked dwarf virus to rice without insect vector

机译:一种无需昆虫载体即可将南方水稻黑条矮化病毒传播到水稻的新方法

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Background Southern rice black-streaked dwarf virus (SRBSDV) has spread from the south of China to the north of Vietnam in the past few years, and has severely influenced rice production. However, previous study of traditional SRBSDV transmission method by the natural virus vector, the white-backed planthopper (WBPH, Sogatella furcifera ), in the laboratory, researchers are frequently confronted with lack of enough viral samples due to the limited life span of infected vectors and rice plants and low virus acquisition and inoculation efficiency by the vector. Meanwhile, traditional mechanical inoculation of virus only apply to dicotyledon because of the higher content of lignin in the leaves of the monocot. Therefore, establishing an efficient and persistent-transmitting model, with a shorter virus transmission time and a higher virus transmission efficiency, for screening novel anti-SRBSDV drugs is an urgent need. Methods In this study, we firstly reported a novel method for transmitting SRBSDV in rice using the bud-cutting method. The transmission efficiency of SRBSDV in rice was investigated via the polymerase chain reaction (PCR) method and the replication of SRBSDV in rice was also investigated via the proteomics analysis. Results Rice infected with SRBSDV using the bud-cutting method exhibited similar symptoms to those infected by the WBPH, and the transmission efficiency (>80.00%), which was determined using the PCR method, and the virus transmission time (30?min) were superior to those achieved that transmitted by the WBPH. Proteomics analysis confirmed that SRBSDV P1, P2, P3, P4, P5–1, P5–2, P6, P8, P9–1, P9–2, and P10 proteins were present in infected rice seedlings infected via the bud-cutting method. Conclusion The results showed that SRBSDV could be successfully transmitted via the bud-cutting method and plants infected SRBSDV exhibited the symptoms were similar to those transmitted by the WBPH. Therefore, the use of the bud-cutting method to generate a cheap, efficient, reliable supply of SRBSDV-infected rice seedlings should aid the development of disease control strategies. Meanwhile, this method also could provide a new idea for the other virus transmission in monocot.
机译:背景技术在过去的几年中,南方水稻黑纹矮化病毒(SRBSDV)从中国南部传播到越南北部,并严重影响了水稻生产。然而,以前通过天然病毒载体白背飞虱(WBPH,Sogatella furcifera)对传统SRBSDV传播方法的研究在实验室中,由于被感染载体的寿命有限,研究人员经常面临缺乏足够的病毒样品的情况以及水稻植物通过载体的低病毒获取和接种效率。同时,由于单子叶植物叶片中木质素含量较高,传统的机械接种病毒仅适用于双子叶植物。因此,迫切需要建立一种有效且持久的,传播时间短,病毒传播效率高的模型来筛选新型抗SRBSDV药物。方法:在本研究中,我们首先报道了一种利用切芽法在水稻中传播SRBSDV的新方法。通过聚合酶链反应(PCR)方法研究了SRBSDV在水稻中的传播效率,并通过蛋白质组学分析研究了SRBSDV在水稻中的复制。结果用芽切法感染SRBSDV的水稻表现出与用WBPH感染的水稻相似的症状,用PCR法测定的传播效率(> 80.00%),病毒传播时间(30分钟)为优于WBPH传输的结果。蛋白质组学分析证实,SRBSDV P1,P2,P3,P4,P5-1,P5-2,P6,P8,P9-1,P9-2和P10蛋白存在于通过芽切法感染的受感染水稻幼苗中。结论结果表明,SRBSDV可以通过切芽方法成功传播,受感染的SRBSDV的症状与WBPH相似。因此,使用切芽方法产生被SRBSDV感染的水稻幼苗的廉价,有效,可靠的供应应有助于疾病控制策略的发展。同时,该方法也可以为单子叶植物中其他病毒的传播提供新的思路。

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