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首页> 外文期刊>Molecular Plant-Microbe Interactions >Site-Directed Mutagenesis and Generation of Chimeric Viruses by Homologous Recombination in Yeast to Facilitate Analysis of Plant-Virus Interactions
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Site-Directed Mutagenesis and Generation of Chimeric Viruses by Homologous Recombination in Yeast to Facilitate Analysis of Plant-Virus Interactions

机译:酵母中同源重组的定点诱变和嵌合病毒的产生,以利于植物病毒相互作用的分析

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摘要

A yeast homologous recombination system was used to generate mutants and chimeras in the genome of Potato leafroll virus (PLRV). A yeast-bacteria shuttle vector was developed that allows mutants and chimeras generated in yeast to be transformed into Escherichia coli for confirmation of the mutations and transformed into Agrobacterium tumefaciens to facilitate agroinfection of plants by the mutant PLRV genomes. The advantages of the system include the high frequency of recovered mutants generated by yeast homologous recombination, the ability to generate over 20 mutants and chimeras using only two restriction endonuclease sites, the ability to introduce multiple additional sequences using three and four DNA fragments, and the mobilization of the same plasmid from yeast to E. coli, A. tumefaciens, and plants. The wild-type PLRV genome showed no loss of virulence after sequential propagation in yeast, E. coli, and A. tumefaciens . Moreover, many PLRV clones with mutations generated in the capsid protein and readthrough domain of the capsid protein replicated and moved throughout plants. This approach will facilitate the analysis of plant-virus interactions of in vivo-generated mutants for many plant viruses, especially those not transmissible mechanically to plants.
机译:使用酵母同源重组系统在马铃薯卷叶病毒(PLRV)的基因组中产生突变体和嵌合体。开发了酵母-细菌穿梭载体,其允许将在酵母中产生的突变体和嵌合体转化到大肠杆菌中以确认突变,并转化到根癌农杆菌中以通过突变体PLRV基因组促进植物的农业感染。该系统的优势包括通过酵母同源重组产生的高回收率突变体,仅使用两个限制性核酸内切酶位点即可产生超过20个突变体和嵌合体的能力,使用三个和四个DNA片段引入多个其他序列的能力以及将同一质粒从酵母中转移到大肠杆菌,根癌农杆菌和植物中。在酵母,大肠杆菌和根癌农杆菌中连续繁殖后,野生型PLRV基因组显示无毒力损失。而且,在衣壳蛋白中产生了许多突变且衣壳蛋白的通读结构域具有突变的许多PLRV克隆在植物中复制并移动。这种方法将有助于分析体内产生的许多植物病毒突变体的植物病毒相互作用,尤其是那些不能机械传递给植物的病毒。

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