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High Frequency of Plant Regeneration through Cyclic Secondary Somatic Embryogenesis in Panax ginseng

机译:人参通过循环次级体细胞胚发生的高频率植物再生。

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摘要

Somatic embryogenesis is one of good examples of the basic research for plant embryo development as well as an important technique for plant biotechnology such as medicinally important plants. Single embryos develop into normal plantlets with shoots and roots. Therefore, direct single embryogenesis derived from single cells is highly important for normal plant regeneration. Here we demonstrate that the cyclic secondary somatic embryogenesis in Panax ginseng Meyer is a permanent source of embryogenic material that can be used for genetic manipulations. Secondary somatic embryos were originated directly from the primary somatic embryos on hormone-free Murashige and Skoog medium, and proliferated further in a cyclic manner. EM medium (one third of modified MS medium [MS medium containing half amount of NH4NO3 and KNO3] with 2% to 3% sucrose) favored further development of proliferated secondary somatic embryos into plantlets with root system. The plantlets developed into plants with well-developed taproots in half-strength Schenk and Hildebrandt basal medium supplemented with 0.5% activated charcoal.
机译:体细胞胚发生是植物胚胎发育基础研究的良好实例之一,也是重要的植物生物技术技术,例如具有重要医学意义的植物。单胚发育成具有芽和根的正常苗。因此,源自单细胞的直接单胚发生对于正常植物再生非常重要。在这里,我们证明人参迈耶的循环次级体细胞胚发生是可用于遗传操作的胚胎发生材料的永久来源。次生体细胞胚直接来源于无激素的Murashige和Skoog培养基上的初生体细胞胚,并以循环方式进一步增殖。 EM培养基(三分之一的改良MS培养基[含一半NH4NO3和KNO3的MS培养基]含2%至3%蔗糖)有利于将增殖的次级体细胞胚进一步发育成具有根系的小植株。在补充有0.5%活性炭的半强度Schenk和Hildebrandt基础培养基中,小植株发育成具有良好主根的植物。

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