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首页> 外文期刊>Molecular Plant-Microbe Interactions >Transformed Hairy Roots of Discaria trinervis: A Valuable Tool for Studying Actinorhizal Symbiosis in the Context of Intercellular Infection
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Transformed Hairy Roots of Discaria trinervis: A Valuable Tool for Studying Actinorhizal Symbiosis in the Context of Intercellular Infection

机译:Discaria trinervis的转化毛根:在细胞间感染的背景下研究放线菌共生的宝贵工具。

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Among infection mechanisms leading to root nodule symbiosis, the intercellular infection pathway is probably the most ancestral but also one of the least characterized. Intercellular infection has been described in Discaria trinervis, an actinorhizal plant belonging to the Rosales order. To decipher the molecular mechanisms underlying intercellular infection with Frankia bacteria, we set up an efficient genetic transformation protocol for D. trinervis based on Agrobacterium rhizogenes. We showed that composite plants with transgenic roots expressing green fluorescent protein can be specifically and efficiently nodulated by Frankia strain BCU110501. Nitrogen fixation rates and feedback inhibition of nodule formation by nitrogen were similar in control and composite plants. In order to challenge the transformation system, the MtEnod11 promoter, a gene from Medicago truncatula widely used as a marker for early infection-related symbiotic events in model legumes, was introduced in D. trinervis. MtEnod11::GUS expression was related to infection zones in root cortex and in the parenchyma of the developing nodule. The ability to study intercellular infection with molecular tools opens new avenues for understanding the evolution of the infection process in nitrogen-fixing root nodule symbioses.
机译:在导致根瘤共生的感染机制中,细胞间感染途径可能是最祖先的,也是特征最少的途径之一。 Discaria trinervis中已经描述了细胞间感染,它是一种属于Rosales的放线植物。为了破译弗兰克氏菌细胞间感染的分子机制,我们建立了一种基于发根农杆菌的三角酵母的高效遗传转化方案。我们显示,具有Franken菌株BCU110501的结节植物可以特异性地和有效地结节,其具有表达绿色荧光蛋白的转基因根。对照植物和复合植物的固氮率和氮对结节形成的反馈抑制作用相似。为了挑战该转化系统,在D. trinervis中引入了MtEnod11启动子,该基因来自Medicago truncatula,被广泛用作模型豆类中与感染相关的共生事件的早期标记。 MtEnod11 :: GUS表达与根部皮层和正在发育的结节实质中的感染区有关。用分子工具研究细胞间感染的能力为了解固氮根瘤共生菌感染过程的演变开辟了新途径。

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