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Q.The glycosidic linkage involved in linking the glucose units in amylose part of starch is : (A) α\alpha-C1−C6C_1-C_6 linkage (B) β\beta-C1−C6C_1-C_6 linkage (C) α\alpha-C1−C4C_1-C_4 linkage (D) β\beta-C1−C4C_1-C_4 linkage

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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Amylose is a linear polymer of glucose units joined by α\alpha-C1C_1–C4C_4 glycosidic linkages. The correct answer is (C).

Understanding Glycosidic Linkages in Polysaccharides

When glucose molecules polymerize to form polysaccharides like starch, they connect through glycosidic bonds — covalent linkages formed between the anomeric carbon (usually C1C_1) of one sugar and a hydroxyl group on another. The nature of this linkage determines the structure and digestibility of the resulting polymer.

Two features define any glycosidic bond:

  • The stereochemistry at C1C_1: α\alpha (hydroxyl below the ring plane) or β\beta (hydroxyl above)
  • The position of attachment: which carbon on the second glucose receives the bond

Starch, the storage polysaccharide in plants, has two components: amylose (linear) and amylopectin (branched). The question asks specifically about amylose.

Step-by-Step Analysis

  1. Glucose cyclization and the anomeric carbon

    When glucose cyclizes into its pyranose (six-membered ring) form, C1C_1 becomes the anomeric carbon. In α\alpha-D-glucose, the −OH-OH on C1C_1 points downward (same side as C6C_6); in β\beta-D-glucose, it points upward.

  2. Amylose structure

    Amylose is an unbranched chain of glucose units. Each glucose connects to the next through its anomeric carbon (C1C_1) linking to the C4C_4 hydroxyl of the adjacent glucose. This creates a linear polymer.

  3. The α\alpha configuration

    In amylose, all glycosidic bonds have the α\alpha configuration at C1C_1. This means the oxygen bridge connecting two glucose units lies below the plane of the ring at the anomeric carbon. This α\alpha-linkage allows the chain to adopt a helical structure.

  4. Why not C1C_1–C6C_6?

    A C1C_1–C6C_6 linkage creates a branch point, not a linear extension. This type of bond appears in amylopectin (the branched component of starch) and glycogen, where side chains sprout from the main backbone. Amylose has no branches, so it uses only C1C_1–C4C_4 linkages. …

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