Plant Biotechnology Institute, National Research Council of Canada, 110 Gymnasium Place, S7N 0W9, Saskatoon, Saskatchewan, Canada.
Plant Cell Rep. 1993 May;12(7-8):385-9. doi: 10.1007/BF00234697.
Interior spruce (Picea glauca engelmannii complex) and black spruce (Picea mariana Mill.) cotyledonary somatic embryos were encapsulated in sodium alginate. Somatic embryo viability was retained, but germination occurred at a reduced frequency compared with the equivalent zygotic embryos. The addition of 0.5% (w/v) activated charcoal to the alginate capsule significantly enhanced root development and germination for somatic embryos but not for zygotic embryos. The possibility of developing an artiflcal endosperm was also investigated, by addition of Litvay (Litvay et al. 1981) nutrients with or without 90 mM sucrose to the alginate-charcoal capsule. This treatment significantly enhanced root development for all embryo categories with the exception of black spruce somatic embryos. Encapsulated and non-encapsulated somatic embryos survived one month cold storage at 4 °C without reduction in germination frequency.
内部云杉(Picea glauca engelmannii complex)和黑云杉(Picea mariana Mill.)子叶体胚被包封在海藻酸钠中。与相应的合子胚相比,子叶体胚的活力得以保留,但发芽频率降低。向海藻酸钠胶囊中添加 0.5%(w/v)活性炭显著促进了体细胞胚的生根和发芽,但对合子胚没有影响。通过向海藻酸钠-活性炭胶囊中添加 Litvay(Litvay 等人,1981 年)营养物质和/或 90 mM 蔗糖,也研究了人工胚乳的可能性。除了黑云杉体细胞胚外,该处理显著促进了所有胚胎类别的生根发育。经过一个月在 4°C 下冷藏,封装和未封装的体细胞胚的发芽频率没有降低,存活率没有降低。