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Q.(a) What is glycosidic linkage? (1 mark)

(b) What are the products obtained on hydrolysis of sucrose? (1 mark)
(c) Name the vitamin whose deficiency is responsible for night blindness. (1 mark) OR
(d) What is a reducing sugar? (1 mark)
(e) Which α-amino acid is not optically active? (1 mark)
(f) Name the bases derived from purines and pyrimidines. (1 mark)
Meghalaya MboseMBOSE Meghalaya Intermediate Board 2022Subjective· 3mImportance★★★★★
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This covers carbohydrate linkages and hydrolysis, a vitamin-deficiency fact, reducing sugars, amino-acid chirality, and the nitrogenous bases of nucleic acids.

  1. Glycosidic linkage When two monosaccharide units combine, the hemiacetal −OH-OH of one unit condenses with an −OH-OH of the other, releasing a molecule of water and forming a C–O–C linkage between the two sugar rings. This ether-type linkage joining the two monosaccharides is called a glycosidic linkage (e.g. the C1−C2C_1-C_2 linkage in sucrose, or the C1−C4C_1-C_4 linkage in maltose).
  2. Hydrolysis products of sucrose Sucrose is a non-reducing disaccharide made of one glucose unit and one fructose unit joined through their anomeric carbons. Acidic or enzymatic (invertaseinvertase) hydrolysis breaks this glycosidic bond: Sucrose+H2O→H+/invertaseGlucose+FructoseSucrose + H_2O \xrightarrow{H^+/invertase} Glucose + Fructose (This 1:1 mixture is called invert sugar, since the sign of optical rotation inverts from dextrorotatory sucrose to net laevorotatory, as fructose's large negative rotation outweighs glucose's positive rotation.)
  3. Vitamin deficiency causing night blindness Vitamin A (retinol) deficiency causes night blindness (xerophthalmia in severe cases), since retinal (derived from vitamin A) is essential for the rhodopsin visual pigment in rod cells of the retina, needed for vision in dim light. …

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