Question of 63
Q.Write five differences between C3 and C4 plants. OR Define:
(a) Osmosis
(b) Diffusion
(c) Plasmolysis
(d) Root pressure
(e) Transpiration
Madhya Pradesh MpbseMP Board Higher Secondary (Class 11) 2018Subjective· 5mImportance★★★★★
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Start your 14-day free trial to unlock the full solution →C3 plants fix CO2 directly via RuBisCO into a 3-carbon compound with normal leaf anatomy, while C4 plants first fix CO2 via PEP carboxylase into a 4-carbon compound, using Kranz anatomy, giving them higher efficiency in hot, dry, bright conditions with minimal photorespiration.
- First stable product of CO2 fixation: In C3 plants, CO2 combines directly with RuBP (via RuBisCO) to form two molecules of 3-phosphoglyceric acid (3-PGA), a 3-carbon compound (hence 'C3'). In C4 plants, CO2 first combines with PEP (phosphoenolpyruvate) to form oxaloacetic acid (OAA), a 4-carbon compound (hence 'C4').
- Primary CO2-fixing enzyme: C3 plants use only RuBisCO (which has both carboxylase and oxygenase activity) to fix CO2. C4 plants use PEP carboxylase (which has no oxygenase activity and a much higher affinity for CO2) in mesophyll cells to first fix CO2, and only later release/re-fix it via RuBisCO in the bundle sheath cells.
- Leaf anatomy: C3 plants have normal leaf anatomy with mesophyll not specially differentiated for photosynthesis around the veins. C4 plants show a distinctive 'Kranz anatomy' — a wreath-like ring of large, chloroplast-rich bundle sheath cells tightly surrounding the vascular bundles, with mesophyll cells radiating around them.
- Photorespiration: C3 plants show significant photorespiration (RuBisCO's oxygenase activity wastes fixed carbon and energy, especially at high temperature/light), reducing net photosynthetic efficiency. C4 plants show minimal or negligible photorespiration, because CO2 is concentrated around RuBisCO in the bundle sheath, suppressing its oxygenase activity. …
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