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Titlebook: Clonal Forestry I; Genetics and Biotech Mulkh-Raj Ahuja,William J. Libby Book 1993 Springer-Verlag Berlin Heidelberg 1993 Embryo.Forestry.F

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Biotechnology and Clonal Forestry,ablish Norway spruce (.) forests (Kleinschmit et al, Chap. 2; Bentzer, Chap. 6, Vol. 2), Eucalypts (. spp) in Brazil (Zobel, Chap. 7, Vol. 2), and radiata pine (.) in New Zealand (Gleed, Chap. 8, Vol. 2).
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However, there are some differences, in particular in the juvenile- and maturation-related regeneration. Examined here are crucial topics of juvenility, maturation and rejuvenation in clonal propagation of trees. In addition, the genetics of clones, population biology of clonal deployment, propagat
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Clonal Material as a Focus for Genetic and Physiological Research in Forest Trees, phenology, shoot elongation, root foraging, to name a few; or responses to stress induced by excess or shortage of water and nutrients, extreme temperatures, and pests. Our ignorance is even more profound when it comes to the genetic control of these mechanisms.
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Conifer Somatic Embryogenesis and Clonal Forestry, 1983; see references in this chapter). In fact, somatic embryogenesis has been demonstrated in essentially all major groups of higher plants, angiosperms (monocots and dicots) and gymnosperms (coniferous and nonconiferous).
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