Course Objectives:
This course will enable the students to –
Course Outcomes (COs):
Course |
Course Outcome |
Learning and teaching strategies |
Assessment Strategies |
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Paper Code |
Paper Title |
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BOT 223
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Plant Physiology & Biochemistry I
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CO38: Understand the process of Photosynthesis, Respiration and Nitrogen metabolism CO39: Learn about Sensory photobiology and know about the Plant Growth hormones (Auxins, Gibberellins. Cytokinins, Ethylene) CO40: Stress physiology – Responses of plants to biotic and abiotic stresses CO41: Understand Water relation of plants with respect to various physiological processes. CO42: Explain chemical properties and deficiency symptoms in plants CO43: Know about the basic principles of plant function, metabolism, secondary products, cell physiology & principles of growth & development |
Class lectures Seminars Tutorials Group discussions and Workshops Question preparation
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Class test, Semester end examinations, Quiz, Solving problems in tutorials, Assignments, Presentation, Individual and group projects |
Soil water, diffusion and osmosis (DPD, OP, TP, and Water Potential), imbibition, Plasmolysis, ascent of sap, transpiration: stomatal structure, mechanism and significance of transpiration.
Mineral Nutrition: Role of micro and macro elements, ion uptake: chelating agents, siderophores
Photosynthetic pigments , absorption and action spectrum, photo-oxidation, non-cyclic and cyclic transportation of electrons, proton gradient and photophosphorylation, Calvin cycle, structure of RUBISCO and regulation of its activity, control of Calvin cycle , C4 pathway and its significance, CAM pathway, differences between C3 and C4 plants and photorespiration
Anaerobic and aerobic respiration, fermentation, Respiratory Quotients, glycolysis, regulation of glycolysis, regulation of TCA cycle, oxidative phosphorylation, glyoxylate pathway, gluconeogenesis. Phloem transport: Mechanism of phloem transport and translocation of sugars
Receptors: ion channel, G-proteins and enzyme linked, calcium-calmodulin cascade, signal transduction mechanisms with special reference to plant growth regulators.
Stress physiology: Plant responses to biotic and abiotic stresses, plant defense mechanisms against water stress, salinity stress, metal toxicity, freezing and heat stress, Role of jasmonic acid and salicylic acid
Plant growth regulators - Auxins, Gibberellins, Cytokinins, Abscisic acid, Ethylene, – chemistry, biosynthesis, bioassay, mechanism of action and their physiological roles.
Photobiology: Phytochromes– their discovery, physiological roles and mechanism of action, Physiology of flowering: Photoperiodism and Vernalization