Q.Describe mechanism for absorption of water.
Water is absorbed by roots through a three-step sequence — imbibition, diffusion, then osmosis — followed by radial movement across the root to the xylem via apoplast/symplast pathways, powered by passive (transpirati...
Step 1. Imbibition. Soil (capillary) water is first adsorbed onto the hydrophilic pectin-and-cellulose wall of the root hair, swelling it without forming a true solution, and continuing until equilibrium.
Step 2. Diffusion. The imbibed water then diffuses across the freely permeable cell wall to reach the interface with the plasma membrane, moving down a diffusion-pressure gradient.
Step 3. Osmosis. Because the root-hair cytoplasm is more concentrated than the water at this interface, water crosses the selectively permeable plasma membrane by osmosis into the living cytoplasm, making the cell turgid.
Step 4. Radial movement across the root. Water then moves inward from cell to cell, driven by a continuously falling DPD (water-potential) gradient from the epiblema to the pericycle, following either the apoplast pathway (through cell walls/intercellular spaces, blocked at the endodermis by the Casparian strip) or the symplast pathway (from living cell to living cell via plasmodesmata), until it reaches the pericycle, adjacent to the protoxylem.
Step 5. Entry into the xylem. Water finally enters the xylem vessels/tracheids, ready for ascent, and this whole sequence is powered by two possible mechanisms — passive absorption (about 98% of the total, driven by transpiration pull, requiring no ATP, mainly by day) and active absorption (driven by root pressure, requiring ATP from root respiration, mainly at night).
Root hairs absorb water sequentially by imbibition (wall), diffusion (to the membrane), and osmosis (into the cytoplasm); water then moves radially across the cortex to the xylem via the apoplast and symplast pathways, driven mainly by passive absorption (transpiration pull, ~98%) and, at night, by active absorption (root pressure).
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