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Review Figures 9.9 and 10.19. Discuss the roles of intermediate and product played by glyceraldehydes 3-phosphate (G3P) in the two processes shown in these two figures.

Short Answer

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Glyceraldehyde-3-phosphates play the role of products and intermediates in metabolic reactions such as the Calvin cycle. But it plays a single role in the case of processes like glycolysis.

Step by step solution

01

Definition of glycolysis and the Calvin cycle

Glycolysis is the first and foremost metabolic reaction that involves the breakdown of glucose. It involves the formation of pyruvate by breaking the glucose molecules with the aid of several enzymes.

Calvin cycle is the series of reactions that occurs in a cyclic manner that results in the formation of sugars. It is an important metabolic reaction in plants. It is reactions that act as a source of food.

02

Role of glyceraldehyde-3-phosphate in the glycolysis

The first figure shows that the glyceraldehyde-3-phosphate acts as an intermediate in the process of glycolysis. Fructose 1,6 bisphosphate is converted into two products in which one molecule is glyceraldehydes 3 phosphate.

The other product formed in this step is the dihydroxyacetone phosphate. It is inter-convertible to glyceraldehydes-3-phosphates by the isomerase enzyme.

Finally, the formation of glycolaldehyde-3-phosphate is the reaction equilibrium establishing step in the glycolysis process. Hence, more amount of G3P is produced.

03

Role of glyceraldehyde-3-phosphate in the Calvin cycle 

The second figure shows the steps involved in the Calvin cycle. In the case of the Calvin cycle, the glyceraldehyde-3-phosphate is not alone the intermediate. It is the final product of this cycle that further undergoes the process of sugar production.

There are six glyceraldehyde-3-phosphates formed in this reaction, of which one is the product, and the other 5 molecules enter the regeneration phase of this reaction.

Hence, the glyceraldehydes-3-phosphate acts as an intermediate in the glycolysis process. In the Calvin cycle, this component acts as a product and as an intermediate.

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Most popular questions from this chapter

How do the CO2molecules used in photosynthesis reach and enter the chloroplasts inside the leaf cell? (See Concept 7.2)

Based on the data in the scatter plot, estimate the percentage change in dry mass of corn and velvetleaf plants if atmospheric CO2 concentration increased from 390 ppm(current levels) to 800 ppm. (a) What is the estimated dry mass of corn and velvetleaf plants at 390ppm? 800 ppm? (b) To calculate the percentage change in mass for each plant. Subtract the mass at 390 ppm from the mass at 800ppm(change in mass), divide by the mass at 390ppm (initial mass), and multiply by 100. What is the estimated percentage change in dry mass for corn? For velvet leaf? (C) Do these results support the conclusion from the other experiments that C3 plants grow better than C4 plants under increased CO2 concentration? Why or why not?

Scientific evidence indicates that the CO2 added to the air by the burning of wood and fossil fuels is contributing to global warming, a rise in global temperature. Tropical rain forests are estimated to be responsible for approximately 20% of global photosynthesis, yet the consumption of large amounts of CO2 by living trees is thought to make little or no net contribution to reduction of global warming. Explain why this might be the case. (Hint: What processes in both living and dead trees produce CO2?)

Explain why a poison that inhibits an enzyme of the Calvin cycle will also inhibit the light reactions.

How are the larger numbers of ATP and NADPH molecules used during the Calvin cycle consistent with the high value of glucose as an energy source?

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