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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Evaluation of a MdMYB10/GFP43 fusion gene for its suitability to act as reporter gene in promoter studies in Fragaria vesca L. 'Rugen'
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Evaluation of a MdMYB10/GFP43 fusion gene for its suitability to act as reporter gene in promoter studies in Fragaria vesca L. 'Rugen'

机译:评估MDMYB10 / GFP43融合基因的适用性,以促进植物基因植物植物研究中的促进剂研究。'Rugen'

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摘要

A Malus domestica MdMYB10 transcription factor gene was previously used as visible marker for successful plant transformation. We combined the MdMYB10 transcription factor gene with a GFP gene to test its viability as a non-destructive, visual, double reporter system for functional promoter studies in transgenic strawberry plants. The GFP gene was fused to MdMYB10 to provide evidence for promoter activity in red colored cells of transformed plant tissue and to exclude artefacts resulting from stress response or due to other environmental cues. To test this system in a first approach, we evaluated the MdMYB10-GFP43 construct in transgenic strawberries in combination with two constitutive promoters of varying strength, the strong CaMV 35S promoter and a weak flavonoid 3'-hydroxylase (F3'H) promoter isolated from the ornamental plant Cosmos sulphureus. Agrobacterium tumefaciens mediated transformation of Fragaria vesca with the MdMYB10-GFP43 construct combined with the CaMV 35S or F3'H promoter sequences resulted in the regeneration of 6 and 4 transgenic lines, respectively. A complete red coloration of all plant organs was found in four out of six transgenic lines harboring the 35S-MdMYB10-GFP43 construct. Less red coloration of plant organs was found for lines transformed with the F3'H-MdMYB10-GFP43 construct. The MdMYB10 gene shows only limited suitability as a reporter gene for promoter studies in strawberries because weak promoter activity is difficult to distinguish, particularly in tissues showing a strongly colored background such as green leaves. GFP specific fluorescence signals were detectable neither in tissue strongly expressing MdMYB10 nor in green tissue of any transgenic line. The reason for this remained unclear but it can be excluded that it was due to incorrect splicing.
机译:Malus domestica mdmyb10转录因子基因以前用作成功植物转化的可见标志物。我们将MDMYB10转录因子基因与GFP基因组合以测试其作为非破坏性,视觉,双报告系统的活力,用于转基因草莓植物中的功能启动子研究。将GFP基因融合到MDMYB10,为转化的植物组织的红色细胞中的启动子活性提供证据,并排除由应力响应或由于其他环境提示而导致的人工制品。为了以第一种方法测试该系统,我们在转基因草莓中评估了与不同强度的两个组成型启动子组合的MDMYB10-GFP43构建体,强烈的CAMV 35s启动子和弱黄酮3'-羟化酶(F3'H)启动子组合观赏植物cosmos sulphureus。农杆菌肿瘤术治疗与CAMV 35S或F3'H启动子序列结合的MDMYB10-GFP43构建体介导FragAria VESCA的转化,导致6和4种转基因系的再生。在含有35s-MDMYB10-GFP43构建体的六种转基因系中的四种中,发现了所有植物器官的完全红色。发现用F3'H-MDMYB10-GFP43构建体转化的植物器官的植物器官的红色着色。 MDMYB10基因仅作为草莓促进剂研究的报告基因仅显示有限的适用性,因为弱启动子活性难以区分,特别是在显示诸如绿叶等强色背景的组织中。 GFP特异性荧光信号既不检测到强烈表达MDMYB10的组织中,也不是任何转基因系列的绿色组织。这仍然不清楚这一点,但它可以被排除在那个原因是拼接不正确。

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