33. The citric acid cycle in respiration yields: (1) 1 GTP, 3 NADH, 1 FADH2 2 CO2 (2) 2 GTP, 2 FADH2, 6NADH, 2CO2 (3) 4GTP, 6NADH, 4FADH2, 2CO2 (4) 32 GTP, 2 NADH, 4 FADH2, 4 CO2
  1. The citric acid cycle in respiration yields:
    (1) 1 GTP, 3 NADH, 1 FADH2 2 CO2
    (2) 2 GTP, 2 FADH2, 6NADH, 2CO2
    (3) 4GTP, 6NADH, 4FADH2, 2CO2
    (4) 32 GTP, 2 NADH, 4 FADH2, 4 CO2


    The citric acid cycle, also known as the Krebs cycle or tricarboxylic acid (TCA) cycle, is a central metabolic pathway that completes the oxidation of glucose derivatives to produce energy-rich molecules. Understanding the exact yield of products per cycle and per glucose molecule is essential for grasping cellular energy production.

    This article details the typical products formed during the citric acid cycle and clarifies the quantities generated per glucose molecule.

    Citric Acid Cycle Overview

    • The cycle takes place in the mitochondrial matrix.

    • Each acetyl-CoA molecule entering the cycle produces specific amounts of reduced coenzymes and high-energy molecules.

    • Since one glucose molecule produces two molecules of pyruvate during glycolysis, and each pyruvate yields one acetyl-CoA, the cycle turns twice per glucose.

    Products per One Turn of the Citric Acid Cycle

    For one acetyl-CoA molecule (one turn of the cycle), the products are:

    • 1 GTP (or ATP)

    • 3 NADH

    • 1 FADH₂

    • 2 CO₂ molecules (released as waste)

    Products per One Molecule of Glucose

    Since one glucose yields two acetyl-CoA molecules, the total products per glucose are:

    • 2 GTP (or ATP)

    • 6 NADH

    • 2 FADH₂

    • 4 CO₂ molecules

    These reduced coenzymes (NADH and FADH₂) feed electrons into the electron transport chain, driving the production of the majority of ATP during oxidative phosphorylation.

    Evaluating the Given Options

    Option Products per Glucose Molecule Correctness
    (1) 1 GTP, 3 NADH, 1 FADH₂, 2 CO₂ (per acetyl-CoA, one turn) Correct per turn, not per glucose
    (2) 2 GTP, 2 FADH₂, 6 NADH, 2 CO₂ CO₂ count too low (should be 4)
    (3) 4 GTP, 6 NADH, 4 FADH₂, 2 CO₂ CO₂ count too low; FADH₂ count too high
    (4) 32 GTP, 2 NADH, 4 FADH₂, 4 CO₂ ATP count too high; NADH count too low

    Option (1) correctly states the products for one turn of the cycle (one acetyl-CoA), which is the standard way to describe the citric acid cycle yield.


    Conclusion

    The citric acid cycle produces 1 GTP, 3 NADH, 1 FADH₂, and 2 CO₂ molecules per acetyl-CoA molecule oxidized. Since each glucose yields two acetyl-CoA molecules, these amounts double per glucose molecule.

    Correct answer: (1) 1 GTP, 3 NADH, 1 FADH2, 2 CO2

25 Comments
  • Kirti Agarwal
    September 18, 2025

    1GTP, 3 NADH, 1 FADH2, 2CO2

  • Neha Yadav
    September 20, 2025

    2 GTP, 6 NADH, 2 FADH2, 4 CO2

  • Bhawna Choudhary
    September 21, 2025

    1 GTP, 3 NADH, 1 FADH2, 2 CO2 – option 1st is correct

  • Sonal Nagar
    September 21, 2025

    1 GTP, 3 NADH, 1 FADH2, 2 CO2.

  • Aafreen Khan
    September 23, 2025

    1st is correct answer — 1 GTP, 3 NADH, 1 FADH2, 2 CO2

  • Dharmpal Swami
    September 23, 2025

    1 GTP ,3 NADH,1 FADH2 and 2 CO2

  • Anurag Giri
    September 23, 2025

    1 GTP ,3 NADH,1 FADH2 and 2 CO2

  • Manisha choudhary
    September 23, 2025

    1 acetyl co-A =3NADH +1FADH2+2CO2
    2acetyl co-A =6NADH +2FADH2+4CO2

  • Pallavi Ghangas
    September 23, 2025

    GTP, 3 NADH, 1 FADH₂, 2 CO₂ (per acetyl-CoA, one turn)

  • Aakansha sharma Sharma
    September 23, 2025

    1GTP, 3 NADH, 1 FADH2, 2CO2

  • Roopal Sharma
    September 24, 2025

    1 GTP, 1FaDH 2co2 and 3 madh per molecule

  • Heena Mahlawat
    September 24, 2025

    1 Gtp , 1 fadh2 ,3 nadh and 2Co2

  • Minal Sethi
    September 24, 2025

    1 GTP, 3 NADH, 1 FADH₂, 2 CO₂ (per acetyl-CoA, one turn)
    option 1

  • Nilofar Khan
    September 24, 2025

    Correct answer: (1) 1 GTP, 3 NADH, 1 FADH2, 2 CO2

  • Deepika sheoran
    September 24, 2025

    1 GTP, 3NADH, 1FADH2, and 2CO2.

  • Soniya Shekhawat
    September 24, 2025

    1 GTP, 3 NADH, 1 FADH₂, 2 CO₂ ✅ (this is correct for one turn / one Acetyl-CoA) not for glucose.

  • Mohd juber Ali
    September 25, 2025

    Citric acid cycle yeild in respiration is
    Per glycose 2 GTP 2FADH2 6NADH 4CO2
    One turn. 1GTP 1FADH2 3NADH 2CO2

  • Muskan singodiya
    September 25, 2025

    1GTP , 1FADH2, 3NADH, 2Co2

  • Avni
    September 26, 2025

    1 GTP, 3 NADH, 1 FADH₂, 2 CO₂ (per acetyl-CoA, one turn)

  • Varsha Tatla
    September 27, 2025

    3NADH, 1FADH2 1GTP 1CO2

  • Arushi Saini
    September 27, 2025

    1GTP, 3 NADH, 1 FADH2, 2CO2

  • Payal Gaur
    September 27, 2025

    1 ATP, 3NADH , 1FADH2 and 2CO2

  • Kajal
    October 2, 2025

    Option 1

  • Santosh Saini
    October 5, 2025

    Citric acid cycle produce 1 GTP , 3 NADH , 1 FADH2 and 2 Co2 molecules per acetyl Co-A and 2 GTP , 6 NADH , 2 FADH2 and 4 Co2 per glucose molecules

  • Sakshi Kanwar
    November 26, 2025

    1 GTP, 3 NADH, 1 FADH2, 2 CO2

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