When excess ATP and NADPH are produced, it can lead to an imbalance in cellular energy and reducing power, potentially disrupting metabolic pathways. This surplus may trigger feedback inhibition, where the products inhibit the enzymes involved in their synthesis, preventing further production. Additionally, high levels of these molecules can cause stress in cellular systems, potentially leading to oxidative damage if not properly regulated. Cells may also divert the excess resources into storage compounds or other metabolic pathways to restore balance.
Oxygen is produced as a by-product while energy carriers, NADPH and ATP, are produced for the next step in the process, the Calvin cycle.
NADPH and ATP are produced by the light reactions. The ATP is a high energy molecule produced by photophosphorylation while the NADPH is produced at the end of the electron transport chain.
ATP and NADHP
The energy sources for the Calvin cycle are ATP and NADPH, which are produced during the light-dependent reactions of photosynthesis. These molecules provide the necessary energy and reducing power for the conversion of carbon dioxide into carbohydrates in the Calvin cycle.
NADPH
Oxygen is produced as a by-product while energy carriers, NADPH and ATP, are produced for the next step in the process, the Calvin cycle.
NADPH and ATP are produced by the light reactions. The ATP is a high energy molecule produced by photophosphorylation while the NADPH is produced at the end of the electron transport chain.
ATP and NADPH
ATP and NADHP
NADPH is the other molecule produced in the second stage of photosynthesis, known as the light-dependent reactions. Both ATP and NADPH are essential for the production of sugars in the Calvin cycle, which is the third stage of photosynthesis.
ATP and NADPH
ATP and NADPH
In light dependent reactions ATP and NADPH are produced
Yes, they carry energy between the light reactions and the Calvin cycle. ADP is phosphorylated into ATP at the ATP synthase while NADP is reduced by the electrons in the transport chain (it then becomes NADPH).
ATP and NADPH
Mainly ATP and NADH are formed.They are used in dark reaction
it is making two products. Those are NADPH and ATP.