Q.How does ascent of sap occur in tall trees?
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Start your 14-day free trial to unlock the full solution →Ascent of sap in tall trees is driven by transpiration pull (cohesion-tension theory): evaporation from leaves creates tension that pulls the cohesive, unbroken water column up through the xylem.
Water absorbed by the roots has to move upward through the xylem to reach the leaves at the top of tall trees. This upward movement of water and dissolved minerals is called the ascent of sap. It is best explained by the transpiration pull mechanism (cohesion-tension theory of Dixon and Joly):
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Transpiration: Water continuously evaporates from the surface of mesophyll cells and diffuses out through the stomata of leaves. This loss of water is called transpiration.
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Development of tension (pull): As water evaporates from the leaf cells, it lowers their water potential and creates a suction force or negative pressure (tension) at the top of the water column.
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Cohesion and adhesion: The water in the xylem forms a continuous, unbroken column from the roots to the leaves. This is possible because:
- Cohesion: water molecules are strongly attracted to each other by hydrogen bonds.
- Adhesion: water molecules stick to the walls of the narrow xylem elements.
- Water also has high surface tension and high tensile strength, so the column resists breaking. …
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