Q.Describe in brief photorespiration.
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Start your 14-day free trial to unlock the full solution →Photorespiration is the RuBisCO-catalysed oxygenation of RuBP under high O2/low CO2, occurring across the chloroplast, peroxisome, and mitochondrion, that consumes O2 and releases CO2 without generating ATP or sugar — a wasteful process that reduces net photosynthesis in C3 plants.
Cause: The key enzyme of the Calvin cycle, RuBisCO (Ribulose-1,5-bisphosphate carboxylase-oxygenase), is bifunctional — it can act as a carboxylase (fixing CO2, the normal photosynthetic reaction) or as an oxygenase (fixing O2 instead). When atmospheric/intercellular CO2 concentration is low and O2 concentration is relatively high — as happens on hot, dry, bright days when stomata partially close to conserve water — RuBisCO's oxygenase activity increases.
The pathway: When RuBisCO acts as an oxygenase, RuBP (5-carbon) combines with O2 instead of CO2, producing:
- One molecule of 3-phosphoglyceric acid (PGA, 3-carbon) — which can re-enter the Calvin cycle.
- One molecule of phosphoglycolate (2-carbon) — a toxic intermediate that must be metabolized further, and this metabolism spans three cell organelles:
- Chloroplast — phosphoglycolate is dephosphorylated to glycolate.
- Peroxisome — glycolate is oxidized to glyoxylate and then to the amino acid glycine.
- Mitochondrion — two molecules of glycine are converted to one molecule of serine, releasing one molecule of CO2 and one of ammonia (NH3) in the process.
Consequences:
- Unlike normal respiration, photorespiration does NOT produce any useful ATP or NADPH/energy for the cell.
- Unlike the Calvin cycle, it produces no sugar/carbohydrate. …
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