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Development of improved versatile broad-host-range vectors for use in methylotrophs and other Gram-negative bacteria

机译:开发改进的通用宽宿主范围载体,用于甲基萎缩和其他革兰氏阴性细菌

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Full exploitation of the information available in bacterial genome sequences requires the availability of facile tools for rapid genetic manipulation. One bacterium for which new genetic tools are needed is the methylotroph Methylobacterium extorquens AM1. IncQ and small IncP vectors were shown to be unsuitable for use in this bacterium, but a spontaneous mutant of a small IncP plasmid was isolated that functioned efficiently in M. extorquens AM1. This plasmid was sequenced and used as a base for developing improved broad-host-range cloning vectors. These vectors were found to replicate in a wide variety of bacterial species and have the following advantages: (1) high copy number in Escherichia coli; (2) small size (7·2 and 8·0?kb); (3) complete sequences; (4) variety of unique restriction sites; (5) blue–white screening via lacZα; (6) conjugative mobilization between bacterial species; and (7) readily adaptable into species-specific promoter-probe and expression vectors. Two low-background promoter-probe vectors were constructed based on these cloning vectors with either lacZ or xylE as reporter genes; these were shown to report gene expression effectively in M. extorquens AM1. Specific expression vectors were developed for use in M. extorquens AM1, which were shown to express foreign genes at significant levels, and a simple strategy is outlined to develop specific expression vectors for other bacteria. The strong mxaF promoter was used for expression, since E. coli lac-derived promoters were expressed at very low levels. This suite of genetic tools will enable a more sophisticated analysis of the physiology of M. extorquens AM1, and these vectors should also be valuable tools in the study of a variety of bacterial species.
机译:充分利用细菌基因组序列中可用的信息需要可用性的工具进行快速遗传操作。需要一种新的遗传工具的细菌是甲基甲基甲基杆菌锆杆菌。插入和小型IncP载体被证明不适合在这种细菌中使用,但分离小IncP质粒的自发突变体,其有效地在M. intercorquens AM1中起作用。将该质粒进行测序并用作显影改进的宽宿主范围克隆载体的基础。发现这些载体在各种细菌种类中复制,并具有以下优点:(1)大肠杆菌的高拷贝数; (2)小尺寸(7·2和8·0?KB); (3)完整序列; (4)各种独特的限制性网站; (5)通过Laczα的蓝白筛选; (6)细菌物种之间的共轭动员; (7)容易适应于特异性特异性启动子探针和表达载体。基于这些克隆载体的两个低背景启动子探针载体构建,具有LacZ或XyLe作为报告基因;这些被证明是有效地报告基因表达在M. extorquens AM1中。开发了特异性表达载体,用于M. intercorquens am1,其显示在显着水平下表达外源基因,并且概述了一种简单的策略,以对其他细菌产生特异性表达载体。强大的MXAF启动子用于表达,因为大肠杆菌衍生的启动子在非常低的水平下表达。这款遗传工具套件将能够更复杂地分析M. interlquens AM1的生理学,这些载体也应该是在研究各种细菌种类的有价值的工具中。

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