Q.What is significance of transpiration? Explain root pressure theory and its limitations.
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Start your 14-day free trial to unlock the full solution →Transpiration is significant for water/mineral uptake, ascent of sap, gas exchange, turgidity and cooling; the root pressure theory explains ascent via living-root hydrostatic pressure, but has several documented limi...
Part A — Significance of transpiration. Transpiration removes the plant's surplus water; it drives passive absorption of water and minerals (about 98% of total uptake) via the negative water potential it creates in leaf cells; it supplies the transpiration pull central to ascent of sap; because it requires open stomata, it enables the gas exchange needed for photosynthesis and respiration; it helps maintain cell turgidity; and it cools leaves through evaporative heat loss. Its one real drawback is that, if excessive, it can cause wilting, tissue injury, or plant death.
Part B — Root pressure theory. Proposed by J. Priestley (named by S. Hales), this theory attributes ascent of sap to a hydrostatic pressure built up by the continuous metabolic activity of living root cortex cells. This root pressure — typically +1 to +2 bars — is enough on its own to push water up 10 to 20 metres, and is demonstrated experimentally by exudation of sap from a freshly cut stem stump, measurable with a manometer.
Part C — Limitations of root pressure theory. (i) It cannot explain ascent in plants taller than 20 m, since measured root pressures are too small.
(ii) Ascent of sap can occur even without a functioning root system.
(iii) Root pressure is almost zero in tall gymnosperm trees. …
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