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A Genetic Transformation Method for Cadmium Hyperaccumulator Sedum plumbizincicola and Non-hyperaccumulating Ecotype of Sedum alfredii

机译:镉超积累景天景天和非过度积累生态型景天景天的遗传转化方法

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The present study demonstrates the development of an Agrobacterium -mediated genetic transformation method for species of the Sedum genus, which includes the Cd/Zn hyperaccumulator Sedum plumbizincicola and the non-hyperaccumulating ecotype of S. alfredii . Multiple shoots were induced from stem nodes of two Sedum plants using Murashige and Skoog (MS) medium containing 0.1 mg/L cytokinin 6-benzyladenine (6-BA) and 1.0 mg/L auxin 1-naphthaleneacetic acid (NAA). The shoot primordia were used as direct targets for Agrobacterium infection. Selection on hygromycin was highly effective in generating Agrobacterium -transformed explants. This callus-free procedure allowed us to obtain transgenic plantlets after rooting hygromycin-resistant shoots on phytohormone-free MS medium containing the antibiotic. The presence and expression of the reporter genes gusA and GFP in transgenic plants were confirmed by a real-time polymerase chain reaction, histochemical GUS assays, and confocal microscopy. This reliable method for genetic transformation of Sedum plants will help us to understand gene functions and the molecular mechanisms underlying Cd hypertolerance and hyperaccumulation in these species.
机译:本研究证明了一种农杆菌介导的景天属物种遗传转化方法的开发,该方法包括镉/锌超积累的景天景天和非超富集生态型苜蓿链球菌。使用含有0.1 mg / L细胞分裂素6-苄腺嘌呤(6-BA)和1.0 mg / L生长素1-萘乙酸(NAA)的Murashige和Skoog(MS)培养基,从两种景天植物的茎节中诱导出多芽。芽原基被用作农杆菌感染的直接靶标。潮霉素的选择在产生农杆菌转化的外植体方面非常有效。这种无愈伤组织的程序使我们能够在含有抗生素的无植物激素的MS培养基上生根抗潮霉素的芽后获得转基因植株。实时聚合酶链反应,组织化学GUS分析和共聚焦显微镜证实了转基因植物中报告基因gusA和GFP的存在和表达。这种对景天属植物进行遗传转化的可靠方法将有助于我们了解这些物种中Cd的超耐受性和高积累基础的基因功能以及分子机制。

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