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Higher plant transformation: principles and molecular tools

机译:高等植物转化:原理和分子工具

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In higher plants, genetic transformation, which is part of the toolbox for the study of living organisms, had been reported only 30 years ago, boosting basic plant biology research, generating superior crops, and leading to the new discipline of plant biotechnology. Here, we review its principles and the corresponding molecular tools. In vitro regeneration, through somatic embryogenesis or organogenesis, is discussed because they are prerequisites for the subsequent Agrobacterium tumefaciens-mediated transferred (T)-DNA or direct DNA transfer methods to produce transgenic plants. Important molecular components of the T-DNA are examined, such as selectable marker genes that allow the selection of transformed cells in tissue cultures and are used to follow the gene of interest in the next generations, and reporter genes that have been developed to visualize promoter activities, protein localizations, and protein-protein interactions. Genes of interest are assembled with promoters and termination signals in Escherichia coli by means of GATEWAY-derived binary vectors that represent the current versatile cloning tools. Finally, future promising developments in transgene technology are considered.
机译:在高等植物中,仅在30年前就报道了遗传转化(它是研究活有机体的工具箱的一部分)的信息,它促进了基础植物生物学研究,产生优质农作物并导致了植物生物技术的新学科。在这里,我们回顾其原理和相应的分子工具。讨论了通过体细胞胚发生或器官发生的体外再生,因为它们是随后农杆菌介导的转移(T)-DNA或直接DNA转移方法生产转基因植物的先决条件。检查了T-DNA的重要分子成分,例如允许在组织培养物中选择转化细胞并用于跟踪下一代关注基因的选择标记基因,以及已开发用于可视化启动子的报告基因。活动,蛋白质定位和蛋白质-蛋白质相互作用。感兴趣的基因通过代表当前通用克隆工具的GATEWAY衍生的二元载体在大肠杆菌中与启动子和终止信号组装在一起。最后,考虑了转基因技术的未来发展前景。

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