Department of Microbiology, Immunology and Pathology, Colorado State University, Fort Collins, Colorado, USA.
Appl Environ Microbiol. 2013 Aug;79(16):4869-78. doi: 10.1128/AEM.00994-13. Epub 2013 Jun 7.
We have made significant improvements to a broad-host-range system for the cloning and manipulation of large bacterial genomic regions based on site-specific recombination between directly repeated oriT sites during conjugation. Using two suicide capture vectors carrying flanking homology regions, oriT sites are recombined on either side of the target region. Using a broad-host-range conjugation helper plasmid, the region between the oriT sites is conjugated into an Escherichia coli recipient strain, where it is circularized and maintained as a chimeric mini-F vector. The cloned target region is functionalized in multiple ways to accommodate downstream manipulation. The target region is flanked with Gateway attB sites for recombination into other vectors and by rare 18-bp I-SceI restriction sites for subcloning. The Tn7-functionalized target can also be inserted at a naturally occurring chromosomal attTn7 site(s) or maintained as a broad-host-range plasmid for complementation or heterologous expression studies. We have used the oriTn7 capture technique to clone and complement Burkholderia pseudomallei genomic regions up to 140 kb in size and have created isogenic Burkholderia strains with various combinations of genomic islands. We believe this system will greatly aid the cloning and genetic analysis of genomic islands, biosynthetic gene clusters, and large open reading frames.
我们对一种基于细菌接合过程中直接重复 oriT 位点之间的特异性重组,用于克隆和操作大的细菌基因组区域的广泛宿主范围系统进行了重大改进。使用两个带有侧翼同源区域的自杀捕获载体,oriT 位点在目标区域的两侧发生重组。利用广泛宿主范围的接合辅助质粒,oriT 位点之间的区域被接合到大肠杆菌受体菌株中,在那里它被环化并作为嵌合 mini-F 载体维持。以多种方式对克隆的目标区域进行功能化,以适应下游操作。目标区域的侧翼带有 Gateway attB 位点,用于与其他载体重组,并且侧翼带有罕见的 18 碱基对的 I-SceI 限制位点,用于亚克隆。Tn7 功能化的目标也可以插入到天然存在的染色体 attTn7 位点或作为广泛宿主范围的质粒维持,用于互补或异源表达研究。我们已经使用 oriTn7 捕获技术克隆和补充了长达 140kb 的伯克霍尔德氏菌基因组区域,并创建了具有各种基因组岛组合的同基因伯克霍尔德氏菌菌株。我们相信这个系统将极大地帮助基因组岛、生物合成基因簇和大的开放阅读框的克隆和遗传分析。