3.5
Carbohydrate catabolism provides energy for cells through cellular respiration and fermentation.
Both processes start with glycolysis and diverge into different pathways depending on oxygen availability.
Glycolysis, an oxygen-independent process, oxidizes glucose into pyruvic acid, producing ATP and NADH.
In cellular respiration, pyruvic acid enters the Krebs cycle, oxidizing to carbon dioxide and generating ATP, NADH, and FADH2.
Electrons from NADH and FADH2 move along the electron transport chain, generating a proton gradient for ATP synthesis via oxidative phosphorylation.
Oxygen is the final electron acceptor in aerobic respiration. Meanwhile, in anaerobic respiration in prokaryotes, the final electron acceptors are inorganic molecules like nitrates or sulfates.
Fermentation occurs when oxygen is unavailable. It converts pyruvic acid into organic end products like lactic acid or ethanol.
Fermentation relies solely on glycolysis to produce only 2 ATP per glucose molecule, while aerobic respiration produces 36 to 38 ATP from the complete oxidation of one glucose molecule.
Koolhydraatkatabolisme is een fundamenteel proces in de cellulaire stofwisseling waarbij energie uit glucose wordt onttrokken via twee primaire routes…
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