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Novel plant transformation system by gene-coated gold particle introduction into specific ceil using ArF excimer laser

机译:通过使用ArF准分子激光将基因包裹的金颗粒引入特定细胞的新型植物转化系统

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摘要

Novel methods for foreign-gene introduction into specific cells are required for the functional analysis of specific cells. We report a new transfection method for intact plant cells that uses ArF excimer laser-induced shock waves to introduce foreigngene-coated gold particles into plant cells through the cell wall. Foreign gene (sGFP)-coated gold particles were randomly scattered on the surface of Torenia tissue samples; the laser was irradiated toward the gold particles using a hollow optical fiber and a quartz light-condensing tip to introduce the particles into the target cells. Treated plant tissue samples were then cultured for several weeks on the selection medium, and transformation was assessed by fluorescence microscopy and PCR. Irradiation-induced damage to the cells and coated DNA was insignificant, and the transformation efficiency was similar to that of biolistic transformation based on the particle number. Although this method requires a suitable laser setup and is time-consuming, it could be applied in transformation experiments on specific target cells. Moreover, this method can possibly be used to introduce not only DNA but also biologically active substances such as protein regulators or inhibitors, whose introduction into cells is difficult through the cell wall.
机译:对于特定细胞的功能分析,需要将外源基因导入特定细胞的新方法。我们报告了一种完整的植物细胞的新转染方法,该方法使用ArF受激准分子激光诱导的冲击波将外源基因涂层的金颗粒通过细胞壁引入植物细胞。包裹有外源基因(sGFP)的金颗粒随机散布在Torenia组织样本的表面;然后,使用中空光纤和石英聚光头向金粒子照射激光,以将金粒子引入靶细胞。然后将处理过的植物组织样品在选择培养基上培养数周,并通过荧光显微镜和PCR评估转化。辐照引起的对细胞和包被的DNA的损伤微不足道,并且基于颗粒数的转化效率与生物弹弹转化相似。尽管此方法需要合适的激光设置并且很耗时,但可以将其用于特定目标细胞的转化实验。而且,该方法不仅可以用于引入DNA,而且可以用于引入生物活性物质,例如蛋白质调节剂或抑制剂,所述生物活性物质难以通过细胞壁引入细胞。

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