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Titlebook: Somatic Embryogenesis and Synthetic Seed I; Y. P. S. Bajaj Book 1995 Springer-Verlag Berlin Heidelberg 1995 Biotechnologie Pflanzen.Embryo

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Role of Polyamines in Somatic Embryogenesisnction” for putrescine in the bacterium . (Herbst and Snell 1948), polyamines have attracted a great deal of attention from workers in diverse fields of the life sciences. The first reports of the existence of putrescine in plants date back to 1911 (see Smith 1991 for a historical summary).
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Role of Maturation and Desiccation of Somatic Embryos in the Production of Dry Artificial Seedbution. At the end of every harvest, the highest quality portion of the seed crop is set aside for the next year’s planting. In many respects, seeds are an ideal propagation system because they (1) contain substantial quantities of food reserves to support the growth and establishment of the young s
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Artificial Seed Production Through Encapsulation of Hairy Root and Shoot Tipsor plant propagation has been investigated in somatic embryogenesis (Kitto and Janick 1985; Redenbaugh et al. 1991). We have extended this concept to the hairy root because of the successful regeneration of the whole plant from Ri-transformed cells. The micropropagation system using these hairy root
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Fluid Drilling as a Delivery System for Somatic Embryo-Derived Plantletsation of somatic embryos in alginate gel (Redenbaugh et al. 1986), desiccation of somatic embryos (Gray et al. 1987), or desiccation of somatic embryos encapsulated in water-soluble resin (Kitto and Janick 1985).
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Genetic Transformation of Somatic Embryoshese biological constraints are linked to the ability of an individual cell to respond to both the introduced DNA and to a regeneration stimulus. For transformation success, the plant cell must have certain attributes which include (1) the competence to express the introduced DNA; (2) the competence
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