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Microbiology: Microbial Metabolism Flashcards

7 cards from real AP practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

Read the first 7 Microbiology: Microbial Metabolism flashcards as text
  1. Which enzyme complex is responsible for pumping protons across the inner mitochondrial or bacterial membrane during electron transport?

    Answer: NADH dehydrogenase (Complex I)

    NADH dehydrogenase (Complex I) oxidizes NADH and pumps protons across the membrane, contributing to the proton motive force.

  2. What is the net ATP yield from substrate-level phosphorylation during glycolysis alone (per glucose)?

    Answer: 2 ATP

    Glycolysis produces 4 ATP but consumes 2 ATP for a net yield of 2 ATP via substrate-level phosphorylation.

  3. A bacterium living in a deep-sea hydrothermal vent uses H2S as an electron donor to fix CO2. This organism is best classified as a:

    Answer: Chemoautotroph (lithotroph)

    Chemoautotrophs (lithotrophs) obtain energy from inorganic compounds like H2S and use CO2 as a carbon source.

  4. During the citric acid cycle, how many NADH molecules are produced per acetyl-CoA entering?

    Answer: 3

    Three NADH molecules are generated per acetyl-CoA in the TCA cycle at isocitrate dehydrogenase, alpha-ketoglutarate dehydrogenase, and malate dehydrogenase.

  5. Which metabolic process directly produces FADH2 in the TCA cycle?

    Answer: Succinate → fumarate

    Succinate dehydrogenase oxidizes succinate to fumarate using FAD as the electron acceptor, generating FADH2.

  6. What is the primary role of fermentation in microbial metabolism?

    Answer: To regenerate NAD+ so glycolysis can continue

    Fermentation regenerates NAD+ by transferring electrons from NADH to organic molecules, allowing glycolysis to continue producing ATP.

  7. Which compound serves as the final electron acceptor in aerobic respiration?

    Answer: Molecular oxygen (O2)

    In aerobic respiration, O2 is the terminal electron acceptor and is reduced to water by cytochrome c oxidase (Complex IV).