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Titlebook: Developmental Biology of Flowering Plants; V. Raghavan Textbook 2000 Springer Science+Business Media New York 2000 Biology.Development.Flo

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Introduction to Plant Developmental Biologyowth and differentiation in vascular plants in general. A brief historical survey shows that the early attempts to study plant development focused on the clearly ordered process of growth whereby the structural and functional organization of the plant body, beginning with the single-celled fertilize
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Seed Germination growth of the embryo in the seed may be due to physiological states vaguely referred to as either quiescence or dormancy. Quiescent seeds germinate when they are accorded with appropriate environmental conditions such as water, the normal composition of the atmosphere, and a physiologically favorab
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Seedling Growtho axis, leads to the emergence of the radicle and the plumule. As the food materials are exhausted, there is a transition of the embryo from the heterotrophic mode of metabolism to the autotrophic mode and the production of new cellular materials by photosynthesis and other metabolic processes. With
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Leaf Growth and Differentiationoxygenase (RuBISCO). This key protein is mentioned here to introduce the chapter on leaves not only because of its importance as a primary enzyme for carbon fixation in the initial reaction of photosynthesis, but also to emphasize that all of the, structural and developmental adaptations of leaves a
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Root Growth and Developmentoats and emerges outside. The continued growth of the root depends on the formation of cells at its apical meristem and a wave of expansion, elongation, and differentiation of the newly formed cells toward the base. The interrelations between these cellular activities may be easily recognized in a l
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