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农杆菌介导的黄矮病毒对整株植物的感染。

Agrobacterium-mediated infection of whole plants by yellow dwarf viruses.

机构信息

Division of Environmental and Life Sciences, Seoul Women's University, Seoul 139-774, Republic of Korea.

出版信息

Virus Res. 2011 Sep;160(1-2):428-34. doi: 10.1016/j.virusres.2011.06.026. Epub 2011 Jul 6.

Abstract

Barley yellow dwarf virus-PAV (BYDV-PAV) and cereal yellow dwarf virus-RPV (CYDV-RPV) are only transmitted between host plants by aphid vectors and not by mechanical transmission. This presents a severe limitation for the use of a reverse genetics approach to analyze the effects of mutations in these viruses on plant infection and aphid transmission. Here we describe the use of agroinfection to infect plants with BYDV-PAV and CYDV-RPV. The cDNAs corresponding to the complete RNA genomes of BYDV-PAV and CYDV-RPV were cloned into a binary vector under the control of the cauliflower mosaic virus 35S promoter and the nopaline synthase transcription termination signal. The self-cleaving ribozyme from hepatitis virus D was included to produce a transcript in planta with a 3' terminus identical to the natural viral RNA. ELISA and RT-PCR analysis showed that the replicons of BYDV-PAV and CYDV-RPV introduced by Agrobacterium into Nicotiana benthamiana and N. clevelandii gave rise to a local infection in the infiltrated mesophyll cells. After several weeks systemic infection of phloem tissue was detected, although no systemic symptoms were observed. Three heterologous virus silencing suppressors increased the efficiency of agroinfection and accumulation of BYDV-PAV and CYDV-RPV in the two Nicotiana species. The progeny viruses purified from infiltrated tissues were successfully transmitted to oat plants by aphids, and typical yellow dwarf symptoms were observed. This study reports the first agroinfection of eudicot plants using BYDV-PAV and CYDV-RPV.

摘要

大麦黄花叶病毒-PAV(BYDV-PAV)和小麦黄矮病毒-RPV(CYDV-RPV)仅通过蚜虫介体在宿主植物之间传播,而不能通过机械传播。这对利用反向遗传学方法分析这些病毒突变对植物感染和蚜虫传播的影响造成了严重限制。在这里,我们描述了利用农杆菌感染来感染 BYDV-PAV 和 CYDV-RPV 的植物。BYDV-PAV 和 CYDV-RPV 的完整 RNA 基因组的 cDNA 被克隆到一个二元载体中,该载体受花椰菜花叶病毒 35S 启动子和胭脂碱合成酶转录终止信号的控制。包含来自肝炎病毒 D 的自我切割核酶,以在体内产生与天然病毒 RNA 3'末端相同的转录本。ELISA 和 RT-PCR 分析表明,农杆菌引入到 Nicotiana benthamiana 和 N. clevelandii 中的 BYDV-PAV 和 CYDV-RPV 的复制子在浸润的叶肉细胞中引起局部感染。几周后,检测到韧皮部组织的系统感染,尽管没有观察到系统症状。三种异源病毒沉默抑制子提高了农杆菌感染和 BYDV-PAV 和 CYDV-RPV 在两种 Nicotiana 物种中的积累效率。从浸润组织中纯化的子代病毒成功地通过蚜虫传播到燕麦植物上,并观察到典型的黄矮症状。本研究首次报道了使用 BYDV-PAV 和 CYDV-RPV 对真双子叶植物进行农杆菌感染。

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