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Gibson assembly : an easy way to clone potyviral full-length infectious cDNA clones ex pressing an ectopic VPg

机译:吉布森组装:克隆表达异位VPg的potyviral全长感染性cDNA克隆的简便方法

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摘要

AbstractBackgroundApproaches to simplify and accelerate the construction of full-length infectious cDNA clones for plant potyviruses have been described, based on cloning strategies involving in vitroligation or homologous recombination in yeast. In the present study, we developed a faster and more efficient in vitro recombination system using Gibson assembly (GA), to engineer a Lettuce mosaic virus (LMV) infectious clone expressing an ectopic mcherry-tagged VPg (Viral protein genome-linked) for in planta subcellular localization of the viral protein in an infection context.MethodsThree overlapping long distance PCR fragments were amplified and assembled in a singlestep process based on in vitro recombination (Gibson assembly). The resulting 17.5 kbp recombinant plasmids (LMVmchVPg_Ec) were inoculated by biolistic on lettuce plants and then propagated mechanically on Nicotiana benthamiana. Confocal microscopy was used to analyze the subcellular localization of the ectopically expressed mcherry-VPg fusion protein.ResultsThe Gibson assembly allowed the cloning of the expected plasmids without any deletion. All the inoculated plants displayed symptoms characteristic of LMV infection. The majority of the mcherry fluorescent signal observed using confocal microscopy was located in the nucleus and nucleolus as expected for a potyviral VPg. ConclusionsThis is the first report of the use of the Gibson assembly method to construct full-length infectious cDNA clones of a potyvirus genome. This is also the first description of the ectopic expression of a tagged version of a potyviral VPg without affecting the viability of the recombinant potyvirus.
机译:摘要背景技术基于涉及酵母中体外连接或同源重组的克隆策略,已经描述了简化和加速植物马铃薯病毒全长感染性cDNA克隆构建的方法。在本研究中,我们开发了一种使用Gibson组件(GA)的更快,更高效的体外重组系统,以工程改造一种生菜花叶病毒(LMV)感染性克隆,该克隆表达异位的带有mcherry标签的VPg(与病毒蛋白基因组相关)方法在体外重组(吉布森组装)的基础上,一步一步扩增并组装三个重叠的长距离PCR片段。通过生弹法将所得的17.5kbp重组质粒(LMVmchVPg_Ec)接种在莴苣植物上,然后在本氏烟草上机械繁殖。共聚焦显微镜用于分析异位表达的mcherry-VPg融合蛋白的亚细胞定位。结果Gibson组装体可以克隆预期的质粒而没有任何缺失。所有接种的植物均表现出LMV感染的特征症状。使用共聚焦显微镜观察到的大多数mcherry荧光信号都位于波状病毒VPg的核和核仁中。结论这是首次使用吉布森组装法构建波多病毒基因组的全长感染性cDNA克隆的报道。这也是在不影响重组马铃薯病毒的生存力的前提下,对马铃薯病毒VPg标记版本异位表达的首次描述。

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