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Efficient transformation of Actinidia arguta by reducing the strength of basal salts in the medium to alleviate callus browning

机译:通过降低培养基中基础盐的强度来缓解愈伤组织褐变,从而有效地转化猕猴桃

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摘要

An efficient transformation system for high-throughput functional genomic studies of kiwifruit has been developed to overcome the problem of necrosis in Actinidia arguta explants. The system uses Agrobacterium tumefaciens strain EHA105 harbouring the binary vector pART27-10 to inoculate leaf strips. The vector contains neomycin phosphotransferase (nptII) and β-glucuronidase (GUS) (uidA) genes. A range of light intensities and different strengths of Murashige and Skoog (MS) basal salt media was used to overcome the problem of browning and/or necrosis of explants and calli. Callus browning was significantly reduced, resulting in regenerated adventitious shoots when the MS basal salt concentration in the culture medium was reduced to half-strength at low light intensity (3.4 μmol m−2 s−1) conditions. Inoculated leaf strips produced putative transformed shoots of Actinidia arguta on half-MS basal salt medium supplemented with 3.0 mg l−1 zeatin, 0.5 mg l−1 6-benzyladenine, 0.05 mg l−1 naphthalene acetic acid, 150 mg l−1 kanamycin and 300 mg l−1 Timentin®. All regenerated plantlets were deemed putative transgenic by histochemical GUS assay and polymerase chain-reaction analysis.
机译:已经开发出一种用于猕猴桃高通量功能基因组研究的有效转化系统,以克服猕猴桃外植体中的坏死问题。该系统使用带有二元载体pART27-10的根癌农杆菌菌株EHA105接种叶条。该载体包含新霉素磷酸转移酶(nptII)和β-葡萄糖醛酸苷酶(GUS)(uidA)基因。 Murashige和Skoog(MS)基础盐培养基的一系列光强度和不同强度用于克服外植体和愈伤组织的褐变和/或坏死的问题。当培养基中的MS基础盐浓度在低光强度(3.4μmolm -2 s -1时)降低至半强度时,愈伤组织的褐变明显减少,从而导致再生不定芽。 )条件。接种的叶片在补充了3.0 mg l -1 玉米素,0.5 mg l -1 6-苄基腺嘌呤,0.05 mg的半MS基础盐培养基上产生了猕猴桃的假定转化芽。 mg l -1 萘乙酸,150 mg l -1 卡那霉素和300 mg l -1 蒂门汀® 。通过组织化学GUS测定和聚合酶链反应分析,所有再生的小植株均被认为是推定的转基因。

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