Q.What are the hydrolysis products of
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Start your 14-day free trial to unlock the full solution →Sucrose hydrolysis breaks the bond between glucose and fructose, giving D-glucose and D-fructose (the mixture is called invert sugar). Lactose hydrolysis breaks the glycosidic bond between galactose and glucose, yielding one molecule each of D-galactose and D-glucose.
Why hydrolysis matters
A disaccharide is two monosaccharides joined by a glycosidic bond. Hydrolysis — adding a water molecule across that bond — splits it apart, releasing the individual sugars. The products depend entirely on which two monosaccharides are linked and how.
(i) Sucrose hydrolysis
Sucrose is table sugar. Its structure is unique:
- Glucose linked via its anomeric carbon (C1, ) to the anomeric carbon (C2, ) of fructose.
- This is an bond — both anomeric carbons are involved, so sucrose itself is non-reducing.
Hydrolysis:
- Water breaks the bond.
- The products are one molecule of D-glucose and one molecule of D-fructose.
- The mixture is called invert sugar because the optical rotation changes from positive (sucrose) to negative (fructose dominates).
(ii) Lactose hydrolysis
Lactose is the sugar found in milk. Its structure is:
- Galactose (a C4 epimer of glucose) linked via its anomeric carbon (C1) to the C4 hydroxyl of glucose.
- The bond is — the galactose anomeric carbon is in the configuration.
When you hydrolyse lactose:
- Water adds across the bond.
- The oxygen bridge breaks; the galactose gets a free anomeric OH (becoming a reducing sugar), and the glucose gets its C4 OH back.
- The products are one molecule of D-galactose and one molecule of D-glucose. …
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