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Regulating Growth Plant Hormones
Plant Growth, Structure & Function Regulating Growth Plant Hormones
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Hormones Hormones are organic substances produced in small amounts that regulate and coordinate metabolism, growth, and morphogenesis.
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Plant Hormones: 5 Classes
Auxins Young leaves, developing seeds. Polar (unidirectionally) and nonpolarly. Cytokinins Root tips. From roots to shoots via xylem. Ethene Most tissues in response to stress. Diffusion from site of synthesis. Abscisic acid Mature leaves and roots, seeds. From leaves in phloem and from the roots in the xylem. Gibberellins Young tissues of the shoot and developing seeds. Xylem and phloem.
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Auxin is the only plant hormone known to be transported polarly.
Polar transport is toward the base Promotes cell elongation
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Auxins Produces in the apical meristems at the tips of shoots
Auxin builds up on shaded sided of seedling and stimulates growth beneath the tip
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Auxin Plays a Role in the Differentiation and Regeneration of Vascular Tissue
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Auxin Promotes Fruit Development
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Auxin Promotes the Formation of Lateral and Adventitious Roots
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Synthetic Auxins - Herbicides
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Ethene Plays a Role in Fruit Ripening
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Ethene Promotes Leaf Drop
Ethene concentration increases and auxin concentration decreases in response to autumn’s shorter days and cooler temperatures
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Cytokinins Promote Cell Division
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Cytokinins Promote the Growth of Lateral Buds
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Abscisic Acid (ABA) ABA promotes seed dormancy and prevents early germination ABA halts primary and secondary growth in plants ABA acts as a stress hormone ABA easily washes out during rainfall
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Abscisic Acid is Responsible for Stomata Closure
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Gibberellin (GA) Gibberellin (GA) causes dwarf mutants to grow tall.
Gibberellin causes hyperelongation of shoots by stimulating cell division and elongation.
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Gibberellin Plays Multiple Roles 1) Breaking seed dormancy
2) In germination
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Gibberellin Affects Fruit Development
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