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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Efficient genetic transformation of Withania coagulans (Stocks) Dunal mediated by Agrobacterium tumefaciens from leaf explants of in vitro multiple shoot culture
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Efficient genetic transformation of Withania coagulans (Stocks) Dunal mediated by Agrobacterium tumefaciens from leaf explants of in vitro multiple shoot culture

机译:根癌农杆菌介导的体外多次芽培养叶片外植体对Withania glutans(Stocks)Dunal的有效遗传转化

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摘要

An efficient and reproducible Agrobacterium-mediated genetic transformation of Withania coagulans was achieved using leaf explants of in vitro multiple shoot culture. The Agrobacterium strain LBA4404 harboring the binary vector pIG121Hm containing β-glucuronidase gene (gusA) under the control of CaMV35S promoter was used in the development of transformation protocol. The optimal conditions for the Agrobacterium-mediated transformation of W. coagulans were found to be the co-cultivation of leaf explants for 20 min to agrobacterial inoculum (O. D. 0.4) followed by 3 days of co-cultivation on medium supplemented with 100 μM acetosyringone. Shoot bud induction as well as differentiation occurred on Murashige and Skoog medium supplemented with 10.0 μM 6-benzylaminopurine, 8.0 μM indole 3-acetic acid, and 50.0 mgl-1 kanamycin after three consecutive cycles of selection. Elongated shoots were rooted using a two-step procedure involving root induction in a medium containing 2. 5 μM indole 3-butyric acid for 1 week and then transferred to hormone free one-half MS basal for 2 weeks. We were successful in achieving 100 % frequency of transient GUS expression with 5 % stable transformation efficiency using optimized conditions. PCR analysis of T_0 transgenic plants showed the presence of gusA and nptII genes confirming the transgenic event. Histochemical GUS expression was observed in the putative transgenic W. coagulans plants. Thin layer chromatography showed the presence of similar type of withanolides in the transgenic and non-transgenic regenerated plants. A. tumefaciens mediated transformation system via leaf explants developed in this study will be useful for pathway manipulation using metabolic engineering for bioactive withanolides in W. coagulans, an important medicinal plant.
机译:使用体外多次芽培养的叶外植体实现了Withania凝聚物的高效和可重现的农杆菌介导的遗传转化。在CaMV35S启动子的控制下,使用携带带有β-葡糖醛酸糖苷酶基因(gusA)的二元载体pIG121Hm的农杆菌菌株LBA4404,用于开发转化方案。农杆菌介导的凝结芽孢杆菌转化的最佳条件是将叶片外植体与农杆菌接种物共培养20分钟(O.D. 0.4),然后在补充有100μM乙酰丁香酮的培养基上共培养3天。在连续三个选择周期后,在补充了10.0μM6-苄氨基氨基嘌呤,8.0μM吲哚3-乙酸和50.0 mgl-1卡那霉素的Murashige和Skoog培养基上发生了芽萌芽以及分化。使用两步程序将伸长的芽生根,包括在含有2. 5μM吲哚3-丁酸的培养基中诱导根,持续1周,然后转移至无激素的一半MS基础2周。在优化条件下,我们成功实现了100%的瞬时GUS表达频率和5%的稳定转化效率。 T_0转基因植物的PCR分析表明存在gusA和nptII基因,证实了转基因事件。在推定的转基因凝结线虫植物中观察到组织化学GUS表达。薄层色谱显示在转基因和非转基因再生植物中存在类似类型的withanolides。在这项研究中开发的通过根外植体通过根癌农杆菌介导的转化系统,对于利用代谢工程技术对重要的药用植物凝结芽孢杆菌的生物活性withanolides进行途径操纵将是有用的。

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