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PRIMARY GROWTH AND DEVELOPMENT OF SHOOTS Seed germination Primary growth of stem and root --cell division: mitosis and cytokinesis gives more cells --cell enlargment: plastic stretching of wall gives larger tissue --differentiation: cell wall, organelles, enzymes (gained or lost)--gives specialized functions Strategies: location and timing of growth Determinate growth --"Pre-set" size, determined genetically or e n vironmentally --cells divide, expand, then differentiate (losing a b i lity to divide) --leaves, flowers, fruits, seeds, (most animal organs) show determinate growth Indeterminate growth --no pre-set size, "continual" growth --cells divide, expand, differentiate in different l o cations, maintaining dividing population ("meristem") --axes of root and shoot (in mammals, blood, skin) show indeterminate growth Determinate growth and differentiation (leaves, flowers, etc.) “Stem cell” Mitosis Cytokinesis Cell expansion Differentiation i to k is nes sio pan l ex Cel Indeterminate growth and differentiation (stems, roots) s os i Mi t “Stem cell” Mitosis Cytokinesis Cell expansion Differentiation i to k Cy is nes sio pan l ex Cel Stem longitudinal section --cell division shown by dots (dark regions, 3H-thymidine autoradiography) --overlap of regions: division with expansion, expansion with differentiation --change in plane of division to make new shapes, e.g., leaves --no migration of cells Apical meristem (cell division) Subapical meristem (division and expansion) Elongation, differentiation Where do leaves come from? Periclinal divisions Differentiation of cells to form tissues shown best by xsection of stem Epidermis Cortex Pith rays Pith Xylem Phloem Summary •Seed contains embryo •Stem and root meristems •Cotyledons (seed leaves) •Stem and root meristems enlarge by cell division (anticlinal), cell enlargement, differentiation •Leaves and axillary buds form by periclinal cell division