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Agrobacterium-mediated transformation of mature embryos of Triticum aestivum and Triticum durum

机译:农杆菌介导的普通小麦和硬质小麦成熟胚的转化

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Plant regeneration studies in cereals have been undertaken in immature embryos, scutellum and also in immature inflorescence tissue. The wheat mature embryos can also be employed for callusing and regeneration, as they are available throughout the year and have presently been employed for transformation studies. An efficient and reproducible method for Agrobacte-rium -mediated transformation of mature embryos of hexaploid bread wheat (Triticum aestivum) and tetraploid pasta wheat (Triticum durum) is reported. Presence of acetosyringone at 200 mu M concentration in the bacterial growth medium, inoculation medium and co-cultivation medium was essential for achieving a 1.5-2.0 fold increase in transient expression of the introduced gus gene. Successful generation of T. aestivum and T. durum transgenic plants at a transformation frequency ranging from 1.28 to 1.77% has been achieved following 2-3 days co-cultivation using mature embryos and also mature embryo-derived calluses with binary Agrobacterium strain LBA4404 (pBI10l:: Act1) and LBA4404 (p35SGUSINT) respectively. Paromomycin and phosphinothricin served as effective selection agents as they did not adversely affect plantlet regeneration. Successful integration as well as inheritance of the transgene was confirmed by Southern hybridization and PCR amplification in T sub(o) as well as T sub(1) generation. Optimization of this method facilitated the introduction of bar gene as a selectable marker conferring herbicide resistance as well as potato proteinase inhibitor gene (pin2) for insect resistance into wheat.
机译:已经在未成熟的胚,盾片以及未成熟的花序组织中进行了谷物中植物的再生研究。小麦成熟胚也可以用于愈伤组织和再生,因为它们一年四季都可用,并且目前已经用于转化研究。报道了用农杆菌介导的六倍体面包小麦(Triticum aestivum)和四倍体意大利面小麦(Triticum durum)的成熟胚转化的有效且可重复的方法。在细菌生长培养基,接种培养基和共培养培养基中存在浓度为200μM的乙酰丁香酮对于使导入的gus基因的瞬时表达提高1.5-2.0倍至关重要。使用成熟胚和成熟胚衍生的愈伤组织与二元农杆菌菌株LBA4404(pBI10l)共培养2-3天后,已经成功地以1.28至1.77%的转化频率成功产生了小麦和杜伦转基因植物。 :: Act1)和LBA4404(p35SGUSINT)。 Paromomycin和phosphinothricin可以作为有效的选择剂,因为它们不会对苗的再生产生不利影响。 Tsub(o)和Tsub(1)世代的Southern杂交和PCR扩增证实了转基因的成功整合和遗传。该方法的优化促进了将bar基因作为赋予除草剂抗性的选择标记以及将马铃薯蛋白酶抑制剂基因(pin2)引入小麦的昆虫抗性。

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