Q.Differentiate between: Aerobic respiration and fermentation
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Start your 14-day free trial to unlock the full solution →Step 1. Oxygen requirement. Aerobic respiration requires molecular oxygen, which acts as the terminal electron acceptor of the electron transport chain. Fermentation (anaerobic respiration) requires no atmospheric oxygen at all.
Step 2. Extent of glucose oxidation. Aerobic respiration completely oxidises glucose all the way to CO2 and water, via glycolysis, the link reaction, the Krebs cycle and the ETC. Fermentation only incompletely oxidises glucose, stopping after glycolysis at the reduction of pyruvic acid to lactic acid (in muscle) or, via acetaldehyde, to ethanol plus CO2 (in yeast).
Step 3. Site. Aerobic respiration needs both the cytoplasm (glycolysis) and the mitochondrion (link reaction, Krebs cycle, ETC). Fermentation occurs entirely within the cytoplasm, with no mitochondrial involvement.
Step 4. ATP yield. Aerobic respiration nets 38 ATP per glucose molecule. Fermentation nets only 2 ATP per glucose molecule - the same 2 ATP that glycolysis alone produces, since no further ATP-generating step follows it. …
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