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黄瓜果实斑驳花叶病毒外壳蛋白基因亚基因组启动子的鉴定及异源表达载体的构建

Identification of the subgenomic promoter of the coat protein gene of cucumber fruit mottle mosaic virus and development of a heterologous expression vector.

作者信息

Rhee Sun-Ju, Jang Yoon Jeong, Lee Gung Pyo

机构信息

Department of Integrative Plant Science, Chung-Ang University, Ansung, 456-756, Korea.

出版信息

Arch Virol. 2016 Jun;161(6):1527-38. doi: 10.1007/s00705-016-2808-9. Epub 2016 Mar 15.

DOI:10.1007/s00705-016-2808-9
PMID:26976138
Abstract

Heterologous gene expression using plant virus vectors enables research on host-virus interactions and the production of useful proteins, but the host range of plant viruses limits the practical applications of such vectors. Here, we aimed to develop a viral vector based on cucumber fruit mottle mosaic virus (CFMMV), a member of the genus Tobamovirus, whose members infect cucurbits. The subgenomic promoter (SGP) in the coat protein (CP) gene, which was used to drive heterologous expression, was mapped by analyzing deletion mutants from a CaMV 35S promoter-driven infectious CFMMV clone. The region from nucleotides (nt) -55 to +160 relative to the start codon of the open reading frame (ORF) of CP was found to be a fully active promoter, and the region from nt -55 to +100 was identified as the active core promoter. Based on these SGPs, we constructed a cloning site in the CFMMV vector and successfully expressed enhanced green fluorescent protein (EGFP) in Nicotiana benthamiana and watermelon (Citrullus lanatus). Co-inoculation with the P19 suppressor increased EGFP expression and viral replication by blocking degradation of the viral genome. Our CFMMV vector will be useful as an expression vector in cucurbits.

摘要

利用植物病毒载体进行异源基因表达有助于研究宿主与病毒的相互作用以及生产有用蛋白质,但植物病毒的宿主范围限制了此类载体的实际应用。在此,我们旨在开发一种基于黄瓜果实斑驳花叶病毒(CFMMV)的病毒载体,CFMMV是烟草花叶病毒属的成员,该属成员感染葫芦科植物。通过分析来自CaMV 35S启动子驱动的感染性CFMMV克隆的缺失突变体来定位用于驱动异源表达的外壳蛋白(CP)基因中的亚基因组启动子(SGP)。相对于CP开放阅读框(ORF)起始密码子,发现核苷酸(nt)-55至+160的区域是一个完全活性的启动子,并且nt -55至+100的区域被鉴定为活性核心启动子。基于这些SGP,我们在CFMMV载体中构建了一个克隆位点,并在本氏烟草和西瓜(西瓜属)中成功表达了增强型绿色荧光蛋白(EGFP)。与P19抑制子共接种通过阻断病毒基因组的降解增加了EGFP表达和病毒复制。我们的CFMMV载体将作为葫芦科植物中的表达载体发挥作用。

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