C3 plants are those that utilize the C3 pathway (Calvin cycle) as their sole mechanism for carbon fixation during photosynthesis. This pathway occurs in the mesophyll cells.
Let's analyze the enzymes listed:
- ATP synthase: This enzyme is essential for producing ATP during photophosphorylation in the light-dependent reactions of photosynthesis, which occur in all photosynthetic plants, including C3 plants. It is also found in mitochondria for ATP production during respiration. So, ATP synthase is found in C3 plants.
- RUBP carboxylase (Ribulose-1,5-bisphosphate carboxylase/oxygenase, or RuBisCO): This is the key enzyme of the Calvin cycle (C3 pathway). It catalyzes the initial fixation of atmospheric CO2 by combining it with Ribulose-1,5-bisphosphate (RuBP). This enzyme is characteristic and highly abundant in C3 plants. So, RuBP carboxylase is found in C3 plants.
- NADP reductase (Ferredoxin-NADP+ reductase): This enzyme catalyzes the final step in the electron transport chain of the light-dependent reactions, reducing NADP+ to NADPH. NADPH is required for the reduction phase of the Calvin cycle. Therefore, NADP reductase is found in C3 plants.
- PEP carboxylase (Phosphoenolpyruvate carboxylase): This enzyme catalyzes the reaction between phosphoenolpyruvate (PEP) and CO2 (as bicarbonate) to form oxaloacetate. While C3 plants do possess PEP carboxylase in their cytoplasm for various metabolic functions (like replenishing TCA cycle intermediates), it does not play the primary role in photosynthetic carbon fixation as it does in C4 and CAM plants. In C4 and CAM plants, PEP carboxylase is responsible for the initial fixation of atmospheric CO2, often in different cells (C4) or at different times (CAM) than RuBisCO activity. The primary photosynthetic carbon fixation in C3 plants is solely mediated by RuBisCO.
Therefore, considering the context of primary photosynthetic carbon fixation pathways, PEP carboxylase is the enzyme listed that is characteristic of C4/CAM pathways but not the primary photosynthetic carboxylase in C3 plants.