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Cloning a peanut resveratrol synthase gene and its expression in purple sweet potato.

机译:花生白藜芦醇合酶基因的克隆及其在紫甘薯中的表达

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A resveratrol synthase gene was cloned from the peanut plant (Arachis hypogaea) by RT-PCR and was transformed into purple sweet potato (Ipomoea batatas) by Agrobacterium-mediated transformation. Stem sections were infected with bacterial solution of OD600 = 0.4 for 20 min and then cocultured for 2 days. Infected explants were cultured on MS media containing 50 mg/l kanamycin, 0.02 mg/l NAA and 1 mg/l 6-BA for bud induction or containing 75 mg/l kanamycin, 1.0 mg/l NAA and 0.1 mg/l 6-BA for root formation. The bud and root induction rates were 37.5 and 25.0%, respectively. 105 regenerated plants were obtained, with 11 positive plants by PCR and Southern blotting analyses. A high level of resveratrol glucoside (340 mug/g dry weight), but no resveratrol, was detected in the transformed plants by HPLC. This study also provides a stable genetic transformation and plant regeneration method for metabolic modification of purple sweet potato. copyright Springer-Verlag 2011.
机译:通过RT-PCR从花生植物( Arachis hypogaea )中克隆出白藜芦醇合酶基因,并通过 Agrobacterium 转化为紫色甘薯( Ipomoea batatas )。介导的转化。将茎切片用OD 600 = 0.4的细菌溶液感染20分钟,然后共培养2天。在含有50 mg / l卡那霉素,0.02 mg / l NAA和1 mg / l 6-BA的MS培养基上培养受感染的外植体以诱导芽或含有75 mg / l卡那霉素,1.0 mg / l NAA和0.1 mg / l 6-BA的MS培养基上培养BA为根形成。芽和根的诱导率分别为37.5%和25.0%。通过PCR和Southern印迹分析获得了105株再生植物,其中11株为阳性植物。通过HPLC在转化的植物中检测到高水平的白藜芦醇葡萄糖苷(340马克杯/克干重),但是没有白藜芦醇。本研究还为紫薯的代谢改良提供了稳定的遗传转化和植物再生方法。版权所有Springer-Verlag 2011。

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