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首页> 外文期刊>Plant Cell Reports >Regeneration of transgenic plants by Agrobacterium-mediated transformation of somatic embryos of juvenile and mature Quercus robur
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Regeneration of transgenic plants by Agrobacterium-mediated transformation of somatic embryos of juvenile and mature Quercus robur

机译:农杆菌介导的少年和成熟栎体细胞胚转化对转基因植物的再生

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摘要

A protocol was developed for genetic transformation of somatic embryos derived from juvenile and mature Quercus robur trees. Optimal transformation conditions were evaluated on the basis of the results of transient GUS expression assays with five oak embryogenic lines and a strain of Agrobacterium tumefaciens (EHA105) harbouring a p35SGUSINT plasmid containing a nptII and a uidA (GUS) genes. For stable transformation, embryo clumps at globular/torpedo stages (4–10 mg) were inoculated with EHA105:p35SGUSINT bacterial cultures, cocultivated for 4 days and selected in proliferation medium with 75 mg/l of kanamycin. Putatively transformed masses appeared after 20–30 weeks of serial transfers to selective medium. Histochemical and molecular analysis (PCR and Southern blot) confirmed the presence of nptII and uidA genes in the plant genomes. Transformation efficiencies ranged from up to 2% in an embryogenic line derived from a 300-year-old tree, to 6% in a juvenile genotype. Twelve independent transgenic lines were obtained from these oak genotypes, and transgenic plantlets were recovered and acclimatized into the soil. This is the first demonstration of the production of transformed somatic embryos and regenerated plants from juvenile and mature trees of Q. robur and suggests the possibility of introducing other genetic constructions to develop trees that are tolerant/resistant to pathogens and/or biotic stresses.
机译:已开发出一种协议,用于遗传转化来自少年和成熟栎树的体细胞胚。基于瞬时GUS表达测定的结果,用五个橡树胚发生系和带有包含nptII和uidA(GUS)基因的p35SGUSINT质粒的根癌农杆菌菌株(EHA105),评估最佳转化条件。为了稳定转化,用EHA105:p35SGUSINT细菌培养物接种球形或鱼雷状胚芽(4-10 mg),共培养4天,然后在含有75 mg / l卡那霉素的增殖培养基中进行选择。连续转移至选择性培养基20-30周后,出现了推定转化的肿块。组织化学和分子分析(PCR和Southern印迹)证实了植物基因组中存在nptII和uidA基因。转化效率范围从在300年历史的树中衍生的胚胎发生系中达到2%,到少年基因型中达到6%。从这些橡树基因型中获得了十二个独立的转基因品系,并回收了转基因幼苗并使其适应了土壤。这是从罗伯Q.robur的幼树和成熟树生产转化的体细胞胚和再生植物的第一个证明,并暗示了引入其他遗传结构来开发对病原体和/或生物胁迫具有耐受性/抗性的树木的可能性。

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