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Agrobacterium-Mediated Gene Transfer to Cereal Crop Plants: Current Protocols for Barley, Wheat, Triticale, and Maize

机译:农杆菌介导的基因转移到谷类作物:大麦,小麦,黑小麦和玉米的当前协议

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The development of powerful “omics” technologies has enabled researchers to identify many genes of interest for which comprehensive functional analyses are highly desirable. However, the production of lines which ectopically express recombinant genes, or those in which endogenous genes are knocked down via stable transformation, remains a major bottleneck for the association between genetics and gene function in monocotyledonous crops. Methods of effective DNA transfer into regenerable cells of immature embryos from cereals by means ofAgrobacterium tumefacienshave been modified in a stepwise manner. The effect of particular improvement measures has often not been significantly evident, whereas their combined implementation has resulted in meaningful advances. Here, we provide updated protocols for theAgrobacterium-mediated generation of stably transgenic barley, wheat, triticale and maize. Based upon these methods, several hundred independent transgenic lines have been delivered, with efficiencies of inoculated embryos leading to stably transgenic plants reaching 86% in barley, 10% in wheat, 4% in triticale, and 24% in maize.
机译:强大的“组学”技术的发展使研究人员能够确定许多感兴趣的基因,因此需要进行全面的功能分析。然而,异位表达重组基因的品系的生产,或通过稳定转化敲除内源基因的品系的生产,仍然是单子叶作物遗传与基因功能之间联系的主要瓶颈。逐步改良了通过根癌农杆菌将DNA有效地转移到谷物中的未成熟胚的可再生细胞中的方法。特定改进措施的效果通常并不十分明显,而将它们结合起来实施则取得了有意义的进展。在这里,我们提供了农杆菌介导的稳定转基因大麦,小麦,黑小麦和玉米的更新方案。基于这些方法,已交付了数百个独立的转基因品系,接种的胚胎的效率导致稳定的转基因植物在大麦中达到86%,在小麦中为10%,在黑小麦中为4%,在玉米中为24%。

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