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Drag each label to the appropriate position to identify whether the given reaction occurs in glycolysis, the CAC, or the ETC Glycolysis Establishment of a chemiosmotic gradient in the intermembrane space Conversion of G6P to fructose 1,6-diphosphateATP synthase activity Oxidation of NADH at enzyme complex1 Citric Acid Cycle Conversion of malic acid to oxaloacetic acidConversion of acetyl-CoA to acetic acid Conversion of PGAL to pyruvic acid Electron Transport Chain Conversion of glucose to G6P Conversion of citric acid to isocitric acid Reset

Respuesta :

Answer:

Establishment of a chemiosmotic gradient in the intermembrane space -> ETC

Conversion of G6P to fructose 1,6-diphosphate -> GLYCOLYSIS

ATP synthase activity -> ETC

Oxidation of NADH at enzyme complex1 -> ETC

Conversion of malic acid to oxaloacetic acid -> CAC

Conversion of acetyl-CoA to acetic acid -> CAC

Conversion of PGAL to pyruvic acid -> GLYCOLISIS

Conversion of glucose to G6P -> GLYCOLYSIS

Conversion of citric acid to isocitric acid -> CAC

Explanation:

There are three boxes of three different cycles

Glycolysis: Here, the cell convert glucose to piruvic acid

Citric Acid cycle (CAC): Here the cell oxydates Acetil CoA to generate energy in form of ATP

Electron transport chain (ETC): Here the cell produced ATP from the NADH and the FADH of glycolysis and CAC

Ver imagen LauraMahecha
Ver imagen LauraMahecha
Ver imagen LauraMahecha