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Titlebook: Biology of Adventitious Root Formation; Tim D. Davis,Bruce E. Haissig Book 1994 Springer Science+Business Media New York 1994 Termination.

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Verstehen und verstanden werdenivisions over years of growth within a phase. It is presumed that phase-dependent characters do not result from a genetic change, but result from an epigenetic difference in the capacity to express genes that permit or prevent expression of a phenotype.
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Commercial Importance of Adventitious Rooting to AgronomyL.), rice (. L.), and wheat (. L.), as well as forage species, such as perennial ryegrass (. L.) and red clover (. L.). Agronomic species in which adventitious root formation is most important are, in general, members of the grass (.) family.
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Differential Competence for Adventitious Root Formation in Histologically Similar Cell Typesivisions over years of growth within a phase. It is presumed that phase-dependent characters do not result from a genetic change, but result from an epigenetic difference in the capacity to express genes that permit or prevent expression of a phenotype.
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Modeling Root System Morphology in Riceystem of rice plants grown under flooded conditions. In this chapter, I will briefly review the structure and development of the rice root system; then I will discuss the mathematical modeling of root system morphology and the applications of such modeling (see chapter by Dickmann and Hendrick in this volume).
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Verstehen und verstanden werdenow concentrations, probably due to the induction of ethylene production, lateral branch roots and adventitious roots are stimulated by high auxin levels, an effect that has been very useful in horticultural practice for plant propagation by cuttings (see chapter by Blakesley, by Haissig and Davis, and by Howard in this volume).
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The , Gene Family: Structural and Physiological Analysesow concentrations, probably due to the induction of ethylene production, lateral branch roots and adventitious roots are stimulated by high auxin levels, an effect that has been very useful in horticultural practice for plant propagation by cuttings (see chapter by Blakesley, by Haissig and Davis, and by Howard in this volume).
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The Role of Expert and Hypertext Systems in Modeling Root-Shoot Interactions and Carbon Allocation Bush (1945) was among the first influential scientists to point out that management of scientific knowledge has not essentially changed for more than 200 years. He summarized the situation as follows:
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