Poulsen Nicole, Kröger Nils
Biochemie I, Universität Regensburg, Germany.
FEBS J. 2005 Jul;272(13):3413-23. doi: 10.1111/j.1742-4658.2005.04760.x.
Research in diatom biology has entered the postgenomic era since the recent completion of the Thalassiosira pseudonana genome project. However, the molecular tools available for genetic manipulation of diatoms are still sparse, impeding the functional analysis of diatom genes in vivo. Here we describe the first method for inducible gene expression in transgenic diatoms. This method uses a DNA cassette containing both promoter (Pnr) and terminator (Tnr) elements derived from the nitrate reductase gene of the diatom Cylindrotheca fusiformis. By using green fluorescent protein (gfp) cDNA as a reporter gene, it is demonstrated that gene expression under the control of the Pnr/Tnr cassette is switched off when cells are grown in the presence of ammonium ions and becomes switched on within 4 h when cells are transferred to medium containing nitrate. Incubating cells in nitrogen-free medium switches on transcription of the gfp gene, yet gfp mRNA does not become translated into protein. This block on translation is released by the addition of nitrate, resulting in rapid onset of GFP production with a drastically reduced delay time of only 1 h. Altogether we have demonstrated that the Pnr/Tnr cassette enables inducible gene expression and control of both the level and timing of mRNA and protein expression in transgenic diatoms.
自从最近完成了三角褐指藻基因组计划以来,硅藻生物学研究已进入后基因组时代。然而,可用于硅藻基因操作的分子工具仍然稀少,这阻碍了硅藻基因在体内的功能分析。在此,我们描述了一种在转基因硅藻中诱导基因表达的方法。该方法使用一个DNA盒,其包含源自硅藻梭形筒柱藻硝酸还原酶基因的启动子(Pnr)和终止子(Tnr)元件。通过使用绿色荧光蛋白(gfp)cDNA作为报告基因,证明当细胞在铵离子存在下生长时,Pnr/Tnr盒控制下的基因表达被关闭,而当细胞转移到含有硝酸盐的培养基中时,在4小时内基因表达被开启。在无氮培养基中培养细胞可开启gfp基因的转录,但gfp mRNA不会被翻译成蛋白质。添加硝酸盐可解除这种翻译阻断,导致GFP产量迅速开始增加,延迟时间大幅缩短至仅1小时。我们总共证明了Pnr/Tnr盒能够在转基因硅藻中实现诱导基因表达,并控制mRNA和蛋白质表达的水平和时间。