Biomolecules MCQs With Answers – Part 5 (Class 11 Biology)
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Biomolecules MCQs with Answers – Part 5 (Class 11 Biology)

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411. Match each molecular description with the correct category. A Column II entry is used once.
Column IColumn II
P. Adenine only\(1\). Purine base
Q. Adenine joined to ribose\(2\). Purine nucleoside
R. Adenine, ribose and phosphate\(3\). RNA-type purine nucleotide
S. Cytosine, \(2'\)-deoxyribose and phosphate\(4\). DNA-type pyrimidine nucleotide
ⓐ. P-\(2\), Q-\(1\), R-\(4\), S-\(3\)
ⓑ. P-\(1\), Q-\(2\), R-\(3\), S-\(4\)
ⓒ. P-\(4\), Q-\(3\), R-\(2\), S-\(1\)
ⓓ. P-\(1\), Q-\(4\), R-\(3\), S-\(2\)
412. Use the molecular arrangement described below. Region P is a two-ring nitrogenous base. Region Q is ribose attached to P. Region R is a phosphate group esterified to Q. Which complete interpretation is correct?
ⓐ. P is a pyrimidine, and the whole molecule is a DNA nucleoside.
ⓑ. P is a purine, and the whole molecule is an RNA-type nucleotide.
ⓒ. P is a purine, and the whole molecule is a free nitrogenous base.
ⓓ. P is a pyrimidine, and the whole molecule is an RNA polynucleotide.
413. Four lipid samples are described below.
SampleStructural evidenceObserved relation
PGlycerol esterified with three fatty acids lacking \(C=C\) bondsRelatively high melting behaviour
QGlycerol esterified with three fatty acids containing \(C=C\) bondsLiquid under the stated room condition
RLipid containing fatty-acid components and phosphateOccurs in cell membranes
SLow-mass membrane lipid recovered in acid-insoluble materialNot a repeating-unit polymer
Which interpretation is correct?
ⓐ. P is an unsaturated monoglyceride; Q is a saturated triglyceride; R is a nucleotide; S is a protein polymer.
ⓑ. P is a saturated diglyceride; Q is an unsaturated monoglyceride; R is a glyceride; S is a nucleic-acid polymer.
ⓒ. P is a saturated monoglyceride; Q is an unsaturated diglyceride; R is phosphate-free; S is acid-soluble.
ⓓ. P is a saturated triglyceride; Q is an unsaturated triglyceride; R is a phospholipid; S is membrane-associated lipid.
414. A lipid isolated from seeds contains glycerol esterified with three fatty acids. At least one fatty-acid chain contains a \(C=C\) bond, and the material is liquid under the stated room condition. Which description best fits the evidence?
ⓐ. It is an unsaturated triglyceride showing oil-like melting behaviour.
ⓑ. It is a saturated monoglyceride because only one glycerol is present.
ⓒ. It is a phospholipid because every seed lipid contains phosphate.
ⓓ. It is a true polysaccharide polymer because it is stored in living tissue.
415. Two purified triglycerides contain the same glycerol backbone and the same number of esterified fatty acids. Lipid P contains no \(C=C\) bonds and melts at a higher temperature than Lipid Q, whose fatty acids contain several \(C=C\) bonds. Which conclusion is best supported?
ⓐ. P and Q differ in esterification number rather than saturation.
ⓑ. Q is a phosphate-containing phospholipid with lower melting.
ⓒ. Q is more unsaturated and melts lower at equal esterification.
ⓓ. P is polymeric, whereas Q is a non-polymeric micromolecule.
416. A membrane lipid loses its phosphate-containing component while retaining its fatty-acid-containing portion. Which prediction is most justified?
ⓐ. It remains a phospholipid because its fatty acids are retained.
ⓑ. Loss of phosphate removes a defining feature of phospholipids.
ⓒ. It becomes a triglyceride regardless of its esterification number.
ⓓ. It enters the acid-soluble pool solely because phosphate is absent.
417. Consider the following statements about integrated lipid classification. I. Saturation depends on the presence or absence of \(C=C\) bonds in fatty-acid chains. II. Mono-, di- and triglyceride names depend on the number of fatty acids esterified to glycerol. III. Phosphate-containing lipids such as lecithin are associated with cell membranes. IV. Acid-insoluble recovery proves that every lipid is a high-mass polymer.
ⓐ. I, II and III only
ⓑ. I and IV only
ⓒ. II, III and IV only
ⓓ. I, II, III and IV
418. Assertion: Membrane lipids may occur in the acid-insoluble fraction even though individual lipid molecules are not true macromolecular polymers. Reason: Disrupted membrane lipids can remain associated in water-insoluble fragments or vesicle-like aggregates during fractionation.
ⓐ. Both Assertion and Reason are true, and Reason correctly explains Assertion
ⓑ. Both Assertion and Reason are true, but Reason does not correctly explain Assertion
ⓒ. Assertion is true and Reason is false; therefore Reason cannot explain Assertion
ⓓ. Assertion is false and Reason is true; therefore Reason cannot explain Assertion
419. An unknown cellular molecule has a molecular mass of \(720\,\text{Da}\), contains fatty-acid components and phosphate, and is recovered mainly with disrupted membrane fragments in the acid-insoluble fraction. What is the strongest conclusion?
ⓐ. It is a nucleotide polymer because phosphate is present.
ⓑ. It is a membrane phospholipid recovered insolubly through membrane association.
ⓒ. It is a high-mass polysaccharide because it remains in the retentate.
ⓓ. It is an acid-soluble amino acid because its mass is below \(800\,\text{Da}\).
420. Four unknown molecules are compared.
MoleculeFatty acids attached to glycerol\(C=C\) bondsPhosphateFraction behaviour
P\(1\)AbsentAbsentNot specified
Q\(3\)PresentAbsentOil-like under the stated condition
R\(3\)AbsentAbsentFat-like under the stated condition
SFatty-acid-containing lipidNot decisivePresentRecovered with membrane fragments
Which synthesis is correct?
ⓐ. P is a saturated triglyceride; Q is a saturated monoglyceride; R is an unsaturated diglyceride; S is a nucleotide.
ⓑ. P is a phosphate-containing lipid; Q is a monoglyceride; R is a diglyceride; S is a polysaccharide polymer.
ⓒ. P and Q differ only in phosphate; R and S are repeating-unit macromolecular polymers.
ⓓ. P is a monoglyceride; Q is an unsaturated triglyceride; R is a saturated triglyceride; S is a phospholipid.
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