Rainey P B, Heithoff D M, Mahan M J
Department of Plant Sciences, University of Oxford, UK.
Mol Gen Genet. 1997 Sep;256(1):84-7. doi: 10.1007/s004380050548.
In vivo expression technology (IVET) is a genetic strategy for isolating genes expressed in vivo. In order to full exploit this technology, it is necessary to analyse large numbers of IVET-generated gene fusions, which must be recovered from the chromosome of host bacteria. In bacteria for which transductional methods are not available, the recovery of integrated fusion plasmids is problematic and currently limits broad application of IVET. We describe a rapid, single-step, triparental conjugative approach for recovering chromosomally integrated fusion plasmids from both Pseudomonas fluorescens and Salmonella typhimurium. This simple and broadly applicable conjugative cloning system extends the utility of the IVET approach to clinically and agronomically relevant microbes and may be employed to recover non-replicating and integrated plasmids in other systems.
体内表达技术(IVET)是一种用于分离体内表达基因的遗传策略。为了充分利用该技术,有必要分析大量由IVET产生的基因融合体,这些融合体必须从宿主细菌的染色体中回收。对于无法使用转导方法的细菌,整合融合质粒的回收存在问题,目前限制了IVET的广泛应用。我们描述了一种快速、单步、三亲本接合方法,用于从荧光假单胞菌和鼠伤寒沙门氏菌中回收染色体整合的融合质粒。这种简单且广泛适用的接合克隆系统将IVET方法的效用扩展到临床和农业相关微生物,并且可用于在其他系统中回收非复制型和整合型质粒。