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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Application of Sonication in Combination with Vacuum Infiltration Enhances the Agrobacterium-Mediated Genetic Transformation in Indian Soybean Cultivars
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Application of Sonication in Combination with Vacuum Infiltration Enhances the Agrobacterium-Mediated Genetic Transformation in Indian Soybean Cultivars

机译:超声处理与真空渗透相结合的应用增强了农杆菌介导的印度大豆品种的遗传转化。

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摘要

Soybean is a recalcitrant crop to Agrobacterium-mediated genetic transformation. Development of highly efficient, reproducible, and genotype-independent transformation protocol is highly desirable for soybean genetic improvement. Hence, an improved Agrobacterium-mediated genetic transformation protocol has been developed for cultivar PK 416 by evaluating various parameters including Agrobacterium tumefaciens strains (LBA4404, EHA101, and EHA105 harboring pCAMBIA1304 plasmid), sonication duration, vacuum infiltration pressure, and vacuum duration using cotyledonary node explants of soybean prepared from 7-day-old seedlings. The transformed plants were successfully developed through direct organogenesis system. Transgene expression was assessed by GUS histochemical and gfp visual assays, and integration was analyzed by PCR and Southern blot hybridization. Among the different combinations and durations evaluated, a maximum transformation efficiency of 18.6 % was achieved when the cotyledonary node explants of cv. PK 416 were sonicated for 20 s and vacuum infiltered for 2 min at 250 mmHg in A. tumefaciens EHA105 suspension. The amenability of the standardized protocol was tested on four more soybean cultivars JS 90-41, Hara Soy, Co 1, and Co 2 in which all the cultivars responded favorably with transformation efficiency ranging from 13.3 to 16.6 %. The transformation protocol developed in the present study would be useful to transform diverse soybean cultivars with desirable traits.
机译:大豆是农杆菌介导的遗传转化的顽强农作物。对于大豆遗传改良,非常需要开发高效,可重复和不依赖基因型的转化方案。因此,通过评估各种参数,包括根癌农杆菌菌株(带有pCAMBIA1304质粒的LBA4404,EHA101和EHA105),超声处理持续时间,真空浸润压力和使用子叶节点的真空持续时间,已为改良的农杆菌PK 416开发了改良的农杆菌介导的遗传转化方案。由7天大的幼苗制成的大豆外植体。通过直接器官发生系统成功地开发了转化的植物。通过GUS组织化学和gfp视觉分析评估转基因表达,并通过PCR和Southern blot杂交分析整合。在评估的不同组合和持续时间中,当子叶节点外植体cv时,最大转化效率达到18.6%。在根癌农杆菌EHA105悬浮液中将PK 416超声处理20 s,并在250 mmHg下真空过滤2分钟。在另外四个大豆品种JS 90-41,原大豆,Co 1和Co 2上测试了标准规程的适用性,其中所有品种的响应良好,转化效率为13.3%至16.6%。在本研究中开发的转化协议将有助于转化具有理想性状的多种大豆品种。

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