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Titlebook: Somatic Embryogenesis and Synthetic Seed II; Y. P. S. Bajaj Book 1995 Springer-Verlag Berlin Heidelberg 1995 Embryo.biotechnology.botanics

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楼主: broach
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Somatic Embryogenesis in Sugarcane (, Species)ropogonae. . species are highly polyploid with no known diploid form. A basic chromosome number has not yet been firmly established, but is estimated in the range of 5–10 (Stevenson 1965). Until the late 1800s, sugarcane varieties belonged mostly to . (2n = 8x = 80), the “noble” cane originating fro
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Somatic Embryogenesis in Chicory (, Species)onomical characteristics. C. . L. is represented by “scarole” (cv. latifolia) and “curly” (cv. crispa) chicories which are used as salads, while C. . L. is long known for its use in medicine and as food. The latter species is composed of several varieties (Longly and Louant 1987; Leteinturier et al.
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Somatic Embryogenesis in Cucurbits 1962). The cultivated species of this family (Table 1; Jelaska 1986) are important crops in the tropics, subtropics, and milder portions of the temperate zones of both hemispheres. They are used as sources of carbohydrates when cooked (squash, pumpkin, marrow, chayote), as dessert or breakfast frui
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Somatic Embryogenesis in Cucumber (, L.)s grown in the field typically require pollination to set fruit, while those grown in greenhouses, particularly as practiced in The Netherlands and other European countries, reproduce parthenocarpically (de Rougemont 1989). The plant has a trailing or climbing growth habit and can be trained up trel
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Somatic Embryogenesis and Organogenesis in Okra(, L. Moench.)or the immature pods, but for the young leaves as well (Olasantan 1988). Okra is a warm weather crop of tropical origin (Kimbrough et al. 1977) that is not drought- or insect-tolerant (Eamus 1986; Olasantan 1986, 1988). Although okara can tolerate simulated insect damage (apical debudding) in the ea
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Somatic Embryogenesis and Artificial Seed in Carrot (, L.)ibuted in Eurasia and Africa, with many horticultural varieties, the roots of which are widely used as food throughout the world. The phenomenon of somatic embryogenesis has been extensively investigated using carrot and other members of the family Umbelliferae.
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Somatic Embryogenesis in Oat (, L.) callus in oat and the ensuing demonstration of plant regeneration via somatic embryogenesis, and of factors affecting plant regeneration were important contributions to the development of a genetic transformation system in oat (Somers et al. 1992). This chapter reviews the current status of investigations of somatic embryogenesis in oat.
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Book 1995olved in studying the intricacies of the fascinating phenomenon of somatic embryogenesis in plant cells and protoplasts. In numerous stimu­ lating discussions with Professor Reinert on this subject, I was fully convinced that somatic embryogenesis would become one of the most important areas of stud
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Somatic Embryogenesis in Orchardgrass (, L.)cially in the British Isles. It is a cool-season forage grass grown for both pasture and hay. Although it is a native of Europe, it has existed in North America for more than 200 years (Jung and Baker 1985).
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