首页> 外文期刊>Agrivita: journal of agricultural science >Transient Transformation of Potato Plant (Solanum tuberosum L.) Granola Cultivar Using Syringe Agroinfiltration
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Transient Transformation of Potato Plant (Solanum tuberosum L.) Granola Cultivar Using Syringe Agroinfiltration

机译:马铃薯植物(Solanum Tuberosum L.)格兰诺拉麦片品种使用注射器农药的瞬态转化

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Genetic transformation has been used as an alternative approach to improve the quality and the productivity of potato plant. In this study, different conditions have been set up to optimize transient GFP (Green Fluorescence Protein) expression in potato cv. Granola. Leaves of potato were infiltrated with Agrobacterium tumefaciens strain C58C1 harboring pK7FWGF2 vector with a nuclear-targeted GFP by simple pressure. GFP signals allowed simple evaluation of transformation efficiency which were indicated by GFP expression in nucleus of leaf cells in infiltrated areas. The results showed that leaf position, co-cultivation time, optical density and the presence of acetosyringone significantly affected the transformation efficiency. The fourth terminal leaves from four-week old plants were the optimum age for transformation. Furthermore, the highest transient transformation efficiency was obtained upon 48 h post infiltration at an OD600 = 0.8, and the presence of 200 μM acetosyringone. In conclusion, the developed protocol will be useful to study gene function as well as to generate stable transformation of this potato cultivar.
机译:遗传转化被用作提高马铃薯植物质量和生产力的替代方法。在该研究中,已经建立了不同的条件以优化马铃薯CV中的瞬时GFP(绿色荧光蛋白)表达。格兰诺拉麦片。马铃薯的叶子用肿瘤的土壤杆菌菌株C58C1患有PK7FWGF2载体,通过简单的压力,核对核对的GFP。 GFP信号允许简单地评估转化效率,该转化效率由渗透区域的叶细胞核中的GFP表达表示。结果表明,叶片位置,共培养时间,光密度和乙酰苯乙烯酮的存在显着影响了转化效率。来自四周的植物的第四个终端是转型的最佳年龄。此外,在OD600 = 0.8的渗透后48小时内获得最高的瞬态转化效率,并且存在200μM乙酰苯胺酮。总之,发育方案将有助于研究基因功能以及产生这种马铃薯品种的稳定转化。

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