Answer :
Answer:
decreased NADPH production.
decreased sugar production.
Explanation:
The water-splitting complex is associated with PSII and serves as a donor of electrons to the reaction center of PSII. PSII loses its electrons upon trapping of sunlight. These electrons are passed finally to NADP reductase via electron transport chain and PSI. NADP reductase reduces NADP into NADPH. The NADPH formed during the light-dependent phase serves as reducing power in reactions of the Calvin cycle.
A mutation in the water-splitting complex would result in no electron supply to PSII and thereby, reduced production of NADPH. The reduced NADPH production would limit the supply of reducing power for the Calvin cycle and the sugar production would be decreased.
The outcome should be decreased NADPH production and decreased sugar production.
NADPH and sugar:
The electrons should be transferred to NADP reductase by electron transport chain and PSI. Due to this, it gets reduced. The reduced NADPH production would limit the supply of reducing power with respect to the Calvin cycle and the sugar production would be decreased.
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