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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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https://doi.org/10.1007/978-3-540-68370-4il the trees have reached about half their rotation age (Namkoong et al. 1980). Because of this predicament, maximum benefit of clonal propagation cannot be expected until we find the appropriate means either to clone older trees or to determine at a young age what the trees will be like at the end of their rotation.
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The Population Biology of Clonal Deployment,specific context and are difficult to generalize. Optimal clonal deployment depends on the characteristics of unspecified pests or diseases and on the future context of forestry, and these factors cannot be safely predicted. What can be done is to discuss some factors, facts, principles, and ideas of possible relevance.
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ion and field testing of clones, clone identification, clonal physiology, regeneration and variation in plant tissue cultures, the role of somatic embryogenesis in clonal forestry, and recent developments in biotechnology, including the molecular structure of trees and gene transfer are covered in depth.978-3-642-84177-4978-3-642-84175-0
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,Funktionsschaltungen für Systemanwendungen,s been due, in part, to technical limitations such as long generation intervals, strong inbreeding depression, lack of precise estimates of nonadditive variance, and difficulty in vegetative propagation. Research results over the last few decades present tree breeders with knowledge and techniques w
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Grundlegende Funktionsprimitive,till utterly sketchy. This is especially true for the physiological and biochemical mechanisms that underlie such common phenomena as dormancy, spring phenology, shoot elongation, root foraging, to name a few; or responses to stress induced by excess or shortage of water and nutrients, extreme tempe
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