首页> 美国卫生研究院文献>Journal of Bacteriology >Transposon vectors containing non-antibiotic resistance selection markers for cloning and stable chromosomal insertion of foreign genes in gram-negative bacteria.
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Transposon vectors containing non-antibiotic resistance selection markers for cloning and stable chromosomal insertion of foreign genes in gram-negative bacteria.

机译:含有非抗生素抗性选择标记的转座子载体用于在革兰氏阴性细菌中克隆和稳定地插入外源基因。

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摘要

A simple procedure for cloning and stable insertion of foreign genes into the chromosomes of gram-negative eubacteria was developed by combining in two sets of plasmids (i) the transposition features of Tn10 and Tn5; (ii) the resistances to the herbicide bialaphos, to mercuric salts and organomercurial compounds, and to arsenite, and (iii) the suicide delivery properties of the R6K-based plasmid pGP704. The resulting constructions contained unique NotI or SfiI sites internal to either the Tn10 or the Tn5 inverted repeats. These sites were readily used for cloning DNA fragments with the help of two additional specialized cloning plasmids, pUC18Not and pUC18Sfi. The newly derived constructions could be maintained only in donor host strains that produce the R6K-specified pi protein, which is an essential replication protein for R6K and plasmids derived therefrom. Donor plasmids containing hybrid transposons were transformed into a specialized lambda pir lysogenic Escherichia coli strain with a chromosomally integrated RP4 that provided broad-host-range conjugal transfer functions. Delivery of the donor plasmids into selected host bacteria was accomplished through mating with the target strain. Transposition of the hybrid transposon from the delivered suicide plasmid to a replicon in the target cell was mediated by the cognate transposase encoded on the plasmid at a site external to the transposon. Since the transposase function was not maintained in target cells, such cells were not immune to further transposition rounds. Multiple insertions in the same strain are therefore only limited by the availability of distinct selection markers. The utility of the system was demonstrated with a kanamycin resistance gene as a model foreign insert into Pseudomonas putida and a melanin gene from Streptomyces antibioticus into Klebsiella pneumoniae. Because of the modular nature of the functional parts of the cloning vectors, they can be easily modified and further selection markers can be incorporated. The cloning system described here will be particularly useful for the construction of hybrid bacteria that stably maintain inserted genes, perhaps in competitive situations (e.g., in open systems and natural environments), and that do not carry antibiotic resistance markers characteristic of most available cloning vectors (as is currently required of live bacterial vaccines).
机译:通过将两组质粒结合在一起,开发了一种简单的方法,可将外源基因克隆并稳定地插入革兰氏阴性真细菌的染色体中(i)Tn10和Tn5的转座特征; (ii)对除草剂双丙氨磷,汞盐和有机汞化合物以及对砷的抗性,以及(iii)基于R6K的质粒pGP704的自杀传递特性。所得的构建体包含在Tn10或Tn5反向重复序列内部的独特NotI或SfiI位点。这些位点很容易在另外两个专门的克隆质粒pUC18Not和pUC18Sfi的帮助下用于克隆DNA片段。新产生的构建体只能在产生R6K特异pi蛋白的供体宿主菌株中维持,该pi蛋白是R6K及其衍生质粒的必需复制蛋白。含有杂合转座子的供体质粒被转化成具有染色体整合的RP4的特化λ溶原性大肠杆菌菌株,该菌株提供了广泛的宿主范围内的结合转移功能。通过与靶菌株的交配完成将供体质粒递送到选定的宿主细菌中。杂合转座子从递送的自杀质粒到靶细胞中的复制子的转座由转座子外部位点上质粒上编码的同源转座酶介导。由于在靶细胞中不能维持转座酶的功能,因此这些细胞不能抵抗进一步的转座。因此,同一菌株中的多次插入仅受不同选择标记的可用性限制。该系统的实用性通过卡那霉素抗性基因作为恶臭假单胞菌的模型外源插入物和抗生素链霉菌的黑色素基因进入肺炎克雷伯菌而得到证明。由于克隆载体功能部分的模块性质,可以轻松地对其进行修饰,并可以加入其他选择标记。此处描述的克隆系统对于构建杂种细菌特别有用,该杂种细菌可能在竞争情况下(例如,在开放系统和自然环境中)稳定地维持插入的基因,并且不携带大多数现有克隆载体所特有的抗生素抗性标记(目前需要活细菌疫苗)。

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