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首次报道用于柔膜体纲的四环素诱导型基因表达系统。

First report of a tetracycline-inducible gene expression system for mollicutes.

机构信息

Université de Bordeaux 2, UMR 1090 Génomique Diversité Pouvoir Pathogène, F-33883 Villenave d'Ornon, France.

INRA, UMR 1090 Génomique Diversité et Pouvoir Pathogène, F-33883 Villenave d'Ornon, France.

出版信息

Microbiology (Reading). 2010 Jan;156(Pt 1):198-205. doi: 10.1099/mic.0.034074-0. Epub 2009 Oct 1.

DOI:10.1099/mic.0.034074-0
PMID:19797362
Abstract

Inducible promoter systems are powerful tools for studying gene function in prokaryotes but have never been shown to function in mollicutes. In this study we evaluated the efficacy of the tetracycline-inducible promoter Pxyl/tetO(2) from Bacillus subtilis in controlling gene expression in two mollicutes, the plant pathogen Spiroplasma citri and the animal pathogen Mycoplasma agalactiae. An S. citri plasmid carrying the spiralin gene under the control of the xyl/tetO(2) tetracycline-inducible promoter and the TetR repressor gene under the control of a constitutive spiroplasmal promoter was introduced into the spiralin-less S. citri mutant GII3-9a3. In the absence of tetracycline, expression of TetR almost completely abolished expression of spiralin from the xyl/tetO(2) promoter. Adding tetracycline (>50 ng ml(-1)) to the medium induced high-level expression of spiralin. Interestingly, inducible expression of spiralin was also detected in vivo: in S. citri-infected leafhoppers fed on tetracycline-containing medium and in S. citri-infected plants watered with tetracycline. A similar construct was introduced into the M. agalactiae chromosome through transposition. Tetracycline-induced expression of spiralin proved the TetR-Pxyl/tetO(2) system to be functional in the ruminant pathogen, suggesting that this tetracycline-inducible promoter system might be of general use in mollicutes.

摘要

诱导型启动子系统是研究原核生物基因功能的强大工具,但从未在柔膜体纲中显示出功能。在这项研究中,我们评估了来自枯草芽孢杆菌的四环素诱导型启动子 Pxyl/tetO(2) 在控制两种柔膜体纲生物,即植物病原体柑橘僵化螺旋体和动物病原体无乳链球菌中基因表达的功效。一个携带螺旋蛋白基因的 S. citri 质粒,受 xyl/tetO(2) 四环素诱导型启动子和受组成型螺旋体启动子控制的 TetR 抑制剂基因的控制,被引入到无螺旋蛋白的 S. citri 突变体 GII3-9a3 中。在没有四环素的情况下,TetR 的表达几乎完全抑制了 xyl/tetO(2) 启动子的螺旋蛋白表达。向培养基中添加四环素(>50ngml(-1))可诱导螺旋蛋白的高水平表达。有趣的是,在体内也检测到了螺旋蛋白的诱导表达:在以含有四环素的培养基为食的感染叶蝉和以含有四环素的水灌溉的感染柑橘的植物中。通过转座将类似的构建体引入到 M. agalactiae 染色体中。螺旋蛋白的四环素诱导表达证明了 TetR-Pxyl/tetO(2) 系统在反刍动物病原体中是有效的,这表明这种四环素诱导型启动子系统可能在柔膜体纲中具有普遍的应用价值。

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