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High and low pressure gene gun devices give similar transformation efficiencies in maize calluses

机译:高低压基因枪装置在玉米老茧中具有相似的转化效率

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摘要

Maize (Zea mays) is a major food crop of the world. Biotechnology plays an important role in plant genetic improvement, particularly for the introduction of novel traits in order to improve agronomic performance, medical and industrial applications and food quality. Particle bombardment is a rapid and simple method that enables the generation of events and affords genes expression studies. Nonetheless, an appropriate reporter gene is necessary to visualize gene expression in the transformed cells. In this study, conditions for transient expression in maize calluses for high and low gene gun pressure devices were optimized and their efficiencies were compared. Performance of?gus?and?gfpreporter genes, either bombarded alone or together, was measured and compared. In addition, the advantages and disadvantages of utilizing these reporter genes in maize calluses and immature wheat embryos are discussed. Finally, we report that for transient transgene expression studies, the particle inflow gun (or LPGG) caters the need while a commercial gene gun (HPGG) device is not of much need.
机译:玉米(Zea mays)是世界上主要的粮食作物。生物技术在植物遗传改良中起着重要作用,特别是在引入新性状以改善农艺性能,医学和工业应用以及食品质量方面。粒子轰击是一种快速而简单的方法,可以产生事件并提供基因表达研究。但是,需要合适的报告基因来可视化转化细胞中的基因表达。在这项研究中,优化了高基因枪和低基因枪压力装置在玉米老茧中瞬时表达的条件,并比较了它们的效率。测量并比较了单独或一起轰击的gus和gfpreporter基因的性能。此外,还讨论了在玉米老茧和未成熟小麦胚中利用这些报告基因的优缺点。最后,我们报告说,对于瞬时转基因表达研究,粒子流入枪(或LPGG)可以满足需要,而商用基因枪(HPGG)设备则不需要太多。

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