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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >A circulatory system useful both for long-term somatic embryogenesis and genetic transformation in Vitis vinifera L. cv. Thompson Seedless
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A circulatory system useful both for long-term somatic embryogenesis and genetic transformation in Vitis vinifera L. cv. Thompson Seedless

机译:一个循环系统,可用于葡萄的长期体细胞胚发生和遗传转化。汤普森无核

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摘要

To establish an efficient regeneration protocol for functional validation and variety resistance improvement, a long-term system that useful for embryogenic culture maintenance and transformation was developed through recurrent cycles of secondary embryogenesis from Vitis vinifera L. cv. Thompson Seedless. Three media and five types of somatic embryo in secondary embryogenesis were evaluated. Somatic embryos (SE) in the torpedo and mid-cotyledonary stages gave the best embryogenic responses with re-induction rates of about 80 %. Embryogenic callus, proembryonic masses and SE produced in the system, could be propagated for over 3 years and all proved competent for Agrobacterium-mediated transformation. Based on this system, different transgenic selection regimes were compared. Addition of kanamycin at 4 weeks after co-cultivation was optimal for embryo recovery. Plant conversion was improved by alternating culture on two media: one containing 0.2 mg l(-1) BA and the other 0.25 mg l(-1) kinetin. To further test the efficiency of the system, a ubiquitin ligase gene (VpPUB23) from Chinese wild Vitis pseudoreticulata was transferred into Thompson Seedless for functional evaluation. Of the 351 transgenic plants obtained, those overexpressing VpPUB23 exhibited decreased resistance to powdery mildew compared with non-transgenic plants
机译:为了建立有效的再生协议以进行功能验证和品种抗性改良,通过葡萄的二次胚胎发生的循环循环,开发了一种对胚胎发生培养物维持和转化有用的长期系统。汤普森无核。评价了二次胚胎发生中的三种培养基和五种类型的体细胞胚。鱼雷和子午叶中期的体细胞胚(SE)产生最佳的胚发生反应,再诱导率约为80%。该系统中产生的胚性愈伤组织,前胚芽肿块和SE可以繁殖3年以上,并且都证明可以胜任农杆菌介导的转化。基于该系统,比较了不同的转基因选择方案。共培养后第4周添加卡那霉素最适合于胚胎恢复。通过在两种培养基上交替培养来提高植物转化率:一种培养基含有0.2 mg l(-1)BA,另一种培养基含有0.25 mg l(-1)kinetin。为了进一步测试该系统的效率,将来自中国野生葡萄假网状体的泛素连接酶基因(VpPUB23)转移到汤普森无核中进行功能评估。与非转基因植物相比,在获得的351个转基因植物中,过表达VpPUB23的植物对白粉病的抵抗力降低

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