Q.What are the expected products of hydrolysis of lactose?
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Start your 14-day free trial to unlock the full solution →Lactose is a disaccharide made of glucose and galactose linked by a glycosidic bond. Hydrolysis breaks this bond, yielding one molecule of D‑glucose and one molecule of D‑galactose — both are reducing sugars.
Why this question matters
Lactose is the sugar found in milk. Many students memorise “glucose + galactose” but forget which anomer or linkage is involved. The exam often tests whether you know that the glycosidic bond is (not ) and that both products are reducing sugars. Let’s build the picture from the structure.
Step‑by‑step reasoning
1. Recall the structure of lactose
Lactose is a disaccharide:
- One unit of D‑galactose (the non‑reducing end)
- One unit of D‑glucose (the reducing end)
- They are joined by a glycosidic bond — that is, the anomeric carbon of galactose (C1) is linked to the C4 hydroxyl of glucose, and the bond is in the configuration.
The linkage means the –OH on the anomeric carbon of galactose is above the ring (in the Haworth projection). This is typical for lactose; an linkage instead would make the molecule a different disaccharide altogether, not lactose.
2. What does hydrolysis do?
Hydrolysis of a glycosidic bond uses water to break the C–O–C link. The oxygen of the bond becomes part of a free –OH group on each monosaccharide.
- The galactose unit gets a free anomeric –OH (it becomes a reducing sugar).
- The glucose unit already had a free anomeric carbon at C1 (it was the reducing end), and after hydrolysis it remains a reducing sugar.
3. Write the products
The reaction is:
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