Goulian Mark, van der Woude Marjan
Department of Physics, University of Pennsylvania, Philadelphia, PA 19104, USA.
Gene. 2006 May 10;372:219-26. doi: 10.1016/j.gene.2006.01.004. Epub 2006 Feb 24.
We describe new plasmids that facilitate the rapid conversion of lacZ fusions to gfp transcriptional fusions in bacteria. The exchange is based on a double recombination between lacZ sequences in a suicide vector and the recipient chromosome. The suicide vector is a mobilizable, conditionally replicative plasmid that contains the gene for gfp with flanking lacZ homology and is derived from a broad host range plasmid that has been successfully used in a wide range of bacterial species. The technique was used to convert lacZ reporter fusions to gfp fusions in Escherichia coli, Bordetella bronchiseptica and Agrobacterium tumefaciens. Green fluorescent protein expression in the new recombinants reflected the beta galactosidase expression in the parent strains. GFP is particularly useful for rapid quantification of gene expression in real time and in single cells. As a demonstration of an application of this system, we studied the induction of virE transcription by the VirA/VirG two-component system in A. tumefaciens in response to various levels of phenolic inducer. Analysis of GFP fluorescence in single cells revealed that at intermediate levels of inducer the population of cells was remarkably heterogeneous. The tools described here will be useful for general studies of transcriptional regulation as well as for applications that require spatial and temporal identification of gene expression, such as in the study of biofilms, and interactions between bacteria and their environment.
我们描述了一些新的质粒,它们能够促进细菌中lacZ融合体快速转化为gfp转录融合体。这种交换基于自杀载体中的lacZ序列与受体染色体之间的双重组。自杀载体是一种可移动的、条件复制性质粒,它含有带有侧翼lacZ同源序列的gfp基因,并且衍生自一种广泛宿主范围的质粒,该质粒已成功应用于多种细菌物种。该技术用于在大肠杆菌、支气管败血波氏杆菌和根癌农杆菌中将lacZ报告基因融合体转化为gfp融合体。新重组体中的绿色荧光蛋白表达反映了亲本菌株中的β-半乳糖苷酶表达。GFP对于实时和单细胞中基因表达的快速定量特别有用。作为该系统应用的一个实例,我们研究了根癌农杆菌中VirA/VirG双组分系统在响应不同水平的酚类诱导剂时对virE转录的诱导作用。对单细胞中GFP荧光的分析表明,在诱导剂的中等水平下,细胞群体具有显著的异质性。本文所述的工具将有助于转录调控的一般研究,以及需要对基因表达进行空间和时间鉴定的应用,例如生物膜研究以及细菌与其环境之间的相互作用研究。