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An efficient protocol for genetic transformation of watercress (Nasturtium officinale) using Agrobacterium rhizogenes

机译:利用发根农杆菌对西洋菜(金莲花)进行遗传转化的有效方案

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摘要

Watercress (Nasturtium officinale) is a member of the Brassicaceae family and a rich source of glucosinolate, which has been shown to possess anticancer properties. To extract these compounds from N. officinale for study, a method was developed in which Agrobacterium rhizogenes was used to transfer DNA segments into plant genomes in order to produce hairy root cultures, which are a reliable source of plant compounds. The A. rhizogenes strain R1000 had the highest infection frequency and induces the most hairy roots per explant. Polymerase chain reaction and cytohistochemical staining methods were used to validate transgenic hairy roots from N. officinale. Glucosinolate from watercress hairy roots was separated and analyzed using high-performance liquid chromatography coupled to electrospray ionization mass spectrometry. Indolic glucosinolates, including glucobrassicin (0.01-0.02 mu mol/g of DW) and 4-methoxyglucobrassicin (0.06-0.18 mu mol/g of DW), as well as aromatic glucosinolate (gluconasturtiin) (0.06-0.21 mu mol/g of DW), were identified virtually identical or more in transformed than wild type roots of N. officinale. Hairy root culture of watercress is a valuable approach for future efforts in the metabolic engineering of glucosinolate biofortification in plants, particularly, because indolic glucosinolates are the precursors of a potent cancer chemopreventive agent (indole-3-carbinol).
机译:豆瓣菜(Nasturtium officinale)是十字花科的一员,是芥子油苷的丰富来源,已被证明具有抗癌作用。为了从药用猪笼草中提取这些化合物进行研究,开发了一种方法,其中使用发根农杆菌将DNA片段转移到植物基因组中,以产生毛状根培养物,这是植物化合物的可靠来源。发根农杆菌菌株R1000具有最高的感染频率,并且每个外植体诱导出最多毛的根。聚合酶链反应和细胞组织化学染色方法用于验证N.officinale的转基因有毛根。豆瓣毛状根中的芥子油苷被分离出来,并用高效液相色谱和电喷雾电离质谱联用。吲哚芥子油苷,包括葡糖苷(0.01-0.02μmol/ g DW)和4-甲氧基葡糖苷(0.06-0.18μmol/ g DW),以及芳族芥子油苷(gluconasturtiin)(0.06-0.21μmol/ g DW )被鉴定为与野生N.officinale的根相比在转化中几乎相同或更多。豆瓣有毛的根部培养是在植物中芥子油苷生物强化的代谢工程中未来努力的一种有价值的方法,特别是因为吲哚类芥子油苷是有效的癌症化学预防剂(吲哚-3-甲醇)的前体。

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