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首页> 外文期刊>Journal of Plant Physiology >Efficient generation of transgenic barley: The way forward to modulate plant-microbe interactions
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Efficient generation of transgenic barley: The way forward to modulate plant-microbe interactions

机译:转基因大麦的高效产生:调节植物与微生物相互作用的方法

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Stable genetic transformation represents the gold standard approach to the detailed elucidation of plant gene functions. This is particularly relevant in barley, an important experimental model widely employed in applied molecular, genetic and cell biological research, and biotechnology. Presented are details of the establishment of a protocol for Agrobacterium-mediated gene transfer to immature embryos, which enables the highly efficient generation of transgenic barley. Advancements were achieved through comparative experiments on the influence of various explant treatments and co-cultivation conditions. The analysis of representative numbers of transgenic lines revealed that the obtained T-DNA copy numbers are typically low, the generative transmission of the recombinant DNA is in accordance with the Mendelian rules and the vast majority of the primary transgenics produce progeny that expresses the respective transgene product. Moreover, the newly established protocol turned out to be useful to transform not only the highly amenable cultivar (cv.) 'Golden Promise' but also other spring and winter barley genotypes, albeit with substantially lower efficiency. As a major result of this study, a very useful tool is now available for future functional gene analyses as well as genetic engineering approaches. With the aim to modify the expression of barley genes putatively involved in plant-fungus interactions, numerous transgenic plants have been generated using diverse expression cassettes. These plants represent an example of how transformation technology may contribute to further our understanding of important biological processes.
机译:稳定的遗传转化代表了详细阐明植物基因功能的金标准方法。这在大麦中尤为重要,大麦是一种广泛用于应用分子,遗传和细胞生物学研究以及生物技术的重要实验模型。介绍了建立农杆菌介导的基因转移至未成熟胚的协议的细节,这使得能够高效地产生转基因大麦。通过比较实验对各种外植体处理和共培养条件的影响取得了进展。对转基因品系代表性数目的分析表明,获得的T-DNA拷贝数通常较低,重组DNA的生成传递符合孟德尔规则,绝大多数初级转基因产生后代以表达各自的转基因产品。而且,新建立的方案不仅可用于转化高度适宜的品种(“金承诺”),而且可用于转化其他春季和冬季大麦基因型,尽管效率大大降低。这项研究的主要成果是,现在有一个非常有用的工具可用于将来的功能基因分析以及基因工程方法。为了修饰假定参与植物-真菌相互作用的大麦基因的表达,已经使用不同的表达盒产生了许多转基因植物。这些植物代表了转化技术如何有助于我们进一步了解重要的生物过程的一个例子。

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