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首页> 外文期刊>Molecular Plant-Microbe Interactions >A Chromosomal Insertion Toolbox for Promoter Probing, Mutant Complementation, and Pathogenicity Studies in Ralstonia solanacearum
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A Chromosomal Insertion Toolbox for Promoter Probing, Mutant Complementation, and Pathogenicity Studies in Ralstonia solanacearum

机译:用于青枯雷尔氏菌的启动子探测,突变补体和致病性研究的染色体插入工具箱

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摘要

We describe here the construction of a delivery system for stable and directed insertion of gene constructs in a permissive chromosomal site of the bacterial wilt pathogen Ralstonia solanacearum. The system consists of a collection of suicide vectors-the Ralstonia chromosome (pRC) series-that carry an integration element flanked by transcription terminators and two sequences of homology to the chromosome of strain GMI1000, where the integration element is inserted through a double recombination event. Unique restriction enzyme sites and a GATEWAY cassette enable cloning of any promoter::gene combination in the integration element. Variants endowed with different selectable antibiotic resistance genes and promoter::gene combinations are described. We show that the system can be readily used in GMI1000 and adapted to other R. solanacearum strains using an accessory plasmid. We prove that the pRC system can be employed to complement a deletion mutation with a single copy of the native gene, and to measure transcription of selected promoters in monocopy both in vitro and in planta. Finally, the system has been used to purify and study secretion type III effectors. These novel genetic tools will be particularly useful for the construction of recombinant bacteria that maintain inserted genes or reporter fusions in competitive situations (i.e., during plant infection).
机译:我们在这里描述了在细菌枯萎病菌青枯菌的允许染色体位点稳定和定向插入基因构建体的传递系统的构建。该系统由自杀载体的集合(Ralstonia染色体(pRC)系列)组成,该载体带有侧翼为转录终止子的整合元件和与菌株GMI1000的染色体同源的两个序列,其中整合元件通过双重重组事件插入。独特的限制酶位点和GATEWAY盒可克隆整合元件中的任何启动子::基因组合。描述了具有不同的选择性抗生素抗性基因和启动子::基因组合的变体。我们显示该系统可以很容易地在GMI1000中使用,并使用辅助质粒适应于其他青枯菌菌株。我们证明,pRC系统可用于与天然基因的单拷贝互补缺失突变,并在体外和植物中以单拷贝测量选定启动子的转录。最后,该系统已用于纯化和研究分泌型III效应子。这些新的遗传工具对于构建在竞争情况下(即在植物感染期间)保持插入的基因或报道基因融合体的重组细菌特别有用。

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