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TnFLX: a Third-Generation mariner-Based Transposon System for Bacillus subtilis

机译:TNFLX:用于枯草芽孢杆菌的第三代基于水手的转座子系统

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Random transposon mutagenesis is a powerful and unbiased genetic approach to answer fundamental biological questions. Here, we introduce an improved mariner -based transposon system with enhanced stability during propagation and versatile applications in mutagenesis. We used a low-copy-number plasmid as a transposon delivery vehicle, which affords a lower frequency of unintended recombination during vector construction and propagation in Escherichia coli . We generated a variety of transposons allowing for gene disruption or artificial overexpression, each in combination with one of four different antibiotic resistance markers. In addition, we provide transposons that will report gene/protein expression due to transcriptional or translational coupling. We believe that the Tn FLX system will help enhance the flexibility of future transposon modification and application in Bacillus and other organisms.IMPORTANCE The stability of transposase-encoding vectors during cloning and propagation is crucial for the reliable application of transposons. Here, we increased the stability of the mariner delivery vehicle in E. coli . Moreover, the Tn FLX transposon system will improve the application of forward genetic methods with an increased number of antibiotic resistance markers and the ability to generate unbiased green fluorescent protein (GFP) fusions to report on protein translation and subcellular localization.
机译:随机转座子诱变是一种强大而无偏的遗传方法,可以回答基本的生物学问题。在这里,我们介绍了一种改进的水工基础的转座子系统,在诱变中传播和通用应用期间具有增强的稳定性。我们使用了低拷贝数的质粒作为转座子递送载体,其在大肠杆菌中的载体构建和繁殖期间提供了较低的意外重组频率。我们产生了各种允许基因破坏或人工过表达的多种转座子,各种与四种不同的抗生素抗性标志物中的一种组合。此外,我们提供转座子,其将报告由于转录或翻译偶联而导致的基因/蛋白表达。我们认为,TN FLX系统将有助于提高未来转座子改性和在芽孢杆菌和其他生物中的应用的灵活性。分析克隆期间转子酶编码载体的稳定性对于可靠应用转座子来说至关重要。在这里,我们提高了在大肠杆菌中的水手输送车辆的稳定性。此外,TN FLX转座子系统将改善前向遗传方法的应用,抗生素抗性标记数增加,以及产生无偏荧光蛋白(GFP)融合的能力,以报告蛋白质翻译和亚细胞定位。

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