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A novel method for transforming the thermophilic bacterium Geobacillus kaustophilus

机译:一种转化嗜热嗜碱芽孢杆菌的新方法

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Bacterial strains of the genus Geobacillus grow at high temperatures of 50–75?°C and could thus be useful for biotechnological applications. However, genetic manipulation of these species is difficult because the current techniques for transforming Geobacillus species are not efficient. In this study, we developed an easy and efficient method for transforming Geobacillus kaustophilus using the conjugative plasmid pLS20cat. We constructed a transformation system comprising (i) a mobilizable Bacillus subtilis–G. kaustophilus shuttle plasmid named pGK1 that carries the elements for selection and replication in Geobacillus, and (ii) a pLS20cat-harboring B. subtilis donor strain expressing the dam methylase gene of Escherichia coli and the conjugation-stimulating rapLS20 gene of pLS20cat. This system can be used to efficiently introduce pGK1 into G. kaustophilus by mobilization in a pLS20cat-dependent way. Whereas the thermostable kanamycin marker and Geobacillus replication origin of pGK1 as well as expression of dam methylase in the donor were indispensable for mobilization, ectopic expression of rapLS20 increased its efficiency. In addition, the conditions of the recipient influenced mobilization efficiency: the highest mobilization efficiencies were obtained using recipient cells that were in the exponential growth phase. Furthermore, elimination of the origin of transfer from pLS20cat enhanced the mobilization. We describe a novel method of plasmid mobilization into G. kaustophilus recipient from B. subtilis donor depending on the helper function of pLS20cat, which enables simple, rapid, and easy transformation of the thermophilic Gram-positive bacterium.
机译:Geobacillus属的细菌菌株在50–75?C的高温下生长,因此可用于生物技术应用。但是,由于目前用于转化地芽孢杆菌种的技术效率不高,因此很难对这些物种进行遗传操作。在这项研究中,我们开发了一种使用结合质粒pLS20cat转化嗜碱芽孢杆菌的简便有效的方法。我们构建了一个包含(i)可动枯草芽孢杆菌-G的转化系统。名为pGK1的嗜碱性粒细胞穿梭质粒,带有在地芽孢杆菌中进行选择和复制的元件,以及(ii)表达大肠杆菌dam甲基化酶基因和刺激pLS20cat的结合刺激的rapLS20基因的携带pLS20cat的枯草芽孢杆菌供体菌株。该系统可用于以依赖pLS20cat的方式动员,将pGK1有效地引入嗜碱性链球菌。 pGK1的热稳定卡那霉素标记物和Geobacillus复制起点以及供体中达姆甲基化酶的表达对于动员必不可少,而rapLS20的异位表达却提高了其效率。此外,受体的条件影响了动员效率:使用处于指数生长期的受体细胞获得了最高的动员效率。此外,消除了从pLS20cat转移的起源,增强了动员能力。我们描述了一种新的质粒动员到枯草芽孢杆菌供体的G. kaustophilus受体中的方法,这取决于pLS20cat的辅助功能,该方法可以使嗜热性革兰氏阳性细菌简单,快速和容易地转化。

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