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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401. Consider the following statements about carbohydrate structure and function. I. Starch and cellulose can both be glucose homopolymers yet differ in function and iodine response. II. Glycogen is a branched glucose storage polymer associated with animals. III. Inulin is identified as a fructose polymer. IV. Chitin is classified as a protein because its modified sugar units may contain nitrogen.
ⓐ. I and IV only
ⓑ. I, II and III only
ⓒ. II, III and IV only
ⓓ. I, II, III and IV
402. Assertion: After selective hydrolysis of starch in a starch–cellulose mixture, the remaining residue may be iodine-negative yet still contain a glucose polymer. Reason: Cellulose is a glucose polymer but lacks the starch-like iodine-holding helical organisation.
ⓐ. 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
403. Match each polysaccharide pair with the distinction that separates its members most directly. A Column II entry is used once.
Column IColumn II
P. Starch and cellulose\(1\). Both are storage glucose polymers, but organismal association and branching differ.
Q. Starch and glycogen\(2\). Both are structural polysaccharides, but their building units and biological locations differ.
R. Cellulose and chitin\(3\). One is an animal storage glucose polymer, whereas the other is a fructose polymer.
S. Glycogen and inulin\(4\). Both can be glucose homopolymers, but linkage, conformation, role and iodine response differ.
ⓐ. P-\(1\), Q-\(4\), R-\(3\), S-\(2\)
ⓑ. P-\(2\), Q-\(3\), R-\(4\), S-\(1\)
ⓒ. P-\(3\), Q-\(2\), R-\(1\), S-\(4\)
ⓓ. P-\(4\), Q-\(1\), R-\(2\), S-\(3\)
404. Use the four arrangements described below. P. An unbranched glucose chain forms a major structural component of a plant cell wall. Q. A glucose reserve polymer contains numerous branches and occurs in animal tissue. R. A plant reserve glucose polymer possesses iodine-holding helical regions. S. A structural chain of modified amino sugars occurs in an arthropod exoskeleton. Which ordered identification is correct?
ⓐ. P-starch, Q-cellulose, R-chitin, S-glycogen
ⓑ. P-inulin, Q-starch, R-cellulose, S-glycogen
ⓒ. P-cellulose, Q-glycogen, R-starch, S-chitin
ⓓ. P-glycogen, Q-inulin, R-starch, S-cellulose
405. Four nitrogen-containing compounds are analysed.
CompoundBaseSugarPhosphate
PPurineAbsentAbsent
QPyrimidineRiboseAbsent
RPurineRibosePresent
SPyrimidine\(2'\)-deoxyribosePresent
Which ordered classification is correct?
ⓐ. P is a base, Q is a nucleoside, R is an RNA-type nucleotide and S is a DNA-type nucleotide.
ⓑ. P is a nucleoside, Q is a base, R is a DNA-type nucleotide and S is an RNA-type nucleotide.
ⓒ. P is a nucleotide, Q is an RNA polymer, R is a nucleoside and S is a free base.
ⓓ. P is a base, Q is a nucleotide, R is a DNA-type nucleoside and S is an RNA-type nucleotide.
406. A purine ribonucleotide is treated in two stages. First, its phosphate is removed without breaking the base–sugar bond. Next, its ribose is removed from the remaining molecule. What are the successive products?
ⓐ. DNA nucleotide followed by pyrimidine base
ⓑ. Free purine base followed by purine nucleoside
ⓒ. Purine nucleoside followed by free purine base
ⓓ. RNA polymer followed by DNA polymer
407. A DNA-type pyrimidine nucleotide is divided into three samples.
SampleTreatmentObserved components after treatment
PPhosphate removedPyrimidine and \(2'\)-deoxyribose remain joined
QSugar removedPyrimidine and phosphate remain, but no sugar
RNo treatmentPyrimidine, \(2'\)-deoxyribose and phosphate remain
Which conclusion is most appropriate?
ⓐ. P remains a DNA nucleotide because its base is a pyrimidine.
ⓑ. Q is a standard nucleoside because phosphate is present.
ⓒ. R is an RNA nucleotide because all nucleotides contain ribose.
ⓓ. P is a deoxyribonucleoside; R remains a DNA-type nucleotide.
408. An RNA-type nucleotide undergoes two changes: ribose is replaced by \(2'\)-deoxyribose, and phosphate is subsequently removed. The nitrogenous base remains unchanged. What is the final product?
ⓐ. An RNA-type nucleotide containing the original base
ⓑ. A DNA-type nucleoside containing the original base
ⓒ. A free nitrogenous base with no sugar
ⓓ. A DNA polynucleotide containing several bases
409. Consider the following statements about nucleic-acid components. I. Purine–pyrimidine classification belongs to the nitrogenous base. II. Ribose and \(2'\)-deoxyribose distinguish RNA-type and DNA-type units. III. Phosphate presence distinguishes a nucleotide from the corresponding nucleoside. IV. Replacing a purine with a pyrimidine automatically removes the sugar and phosphate.
ⓐ. Statements I and IV are correct; II and III are incorrect.
ⓑ. Statements II and III are correct; I and IV are incorrect.
ⓒ. Statements I, II and III are correct; IV is incorrect.
ⓓ. Statements I, II, III and IV are correct without exception.
410. Assertion: A molecule containing cytosine, ribose and phosphate is an RNA-type pyrimidine nucleotide. Reason: Cytosine is a pyrimidine, ribose gives RNA-type identity and phosphate completes nucleotide composition.
ⓐ. 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
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