Cell Cycle And Cell Division MCQs With Answers – Part 2 (Class 11 Biology)
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Cell Cycle and Cell Division MCQs with Answers – Part 2 (Class 11 Biology)

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101. Assertion: Centromere and kinetochore are not exact synonyms. Reason: The centromere is the chromosome region joining sister chromatids, while kinetochores on its surface provide spindle-fibre attachment sites.
ⓐ. Both Assertion and Reason are true, and Reason correctly explains the Assertion
ⓑ. Both Assertion and Reason are true, but Reason does not correctly explain the Assertion
ⓒ. Assertion is true and Reason is false, so Reason cannot correctly explain the Assertion
ⓓ. Assertion is false and Reason is true, so Reason cannot correctly explain the Assertion
102. Control cells form spindle fibres that attach to chromosomes and produce a clear metaphase plate. Treated cells form an apparently bipolar spindle, but their chromosomes remain scattered and show no stable spindle attachment. The treatment most directly affected:
ⓐ. chromosome replication during S phase
ⓑ. chromosome condensation during prophase
ⓒ. kinetochore function during metaphase
ⓓ. nuclear-envelope reformation during telophase
103. A replicated chromosome is positioned between two spindle poles. The kinetochore of one sister chromatid is connected to pole P, while the kinetochore of the other sister chromatid is connected to pole Q. This arrangement represents:
ⓐ. pairing of homologous chromosomes during zygotene
ⓑ. normal bipolar attachment during mitotic metaphase
ⓒ. centromere division during mitotic anaphase
ⓓ. nuclear-envelope reconstitution during telophase
104. Four replicated chromosomes show the attachment patterns listed below.
ChromosomeKinetochore of sister PKinetochore of sister QPosition
WPole 1Pole 1Near Pole 1
XNo attachmentPole 2Off-centre
YPole 1Pole 2At equator
ZNo attachmentNo attachmentScattered
Which chromosome displays the normal mitotic metaphase arrangement?
ⓐ. Chromosome W
ⓑ. Chromosome Y
ⓒ. Chromosome X
ⓓ. Chromosome Z
105. Both sister kinetochores of a replicated mitotic chromosome become attached to spindle fibres leading towards the same pole. If the condition persists, the most likely consequence is:
ⓐ. faulty bipolar orientation with unequal chromosome segregation
ⓑ. normal metaphase alignment followed by equal sister separation
ⓒ. pairing of the chromosome with its homologue as a bivalent
ⓓ. chromosome decondensation before nuclear-envelope breakdown
106. Assertion: The metaphase plate is a permanent membrane located at the centre of the cell. Reason: Spindle forces position replicated chromosomes along an equatorial plane during metaphase.
ⓐ. Both Assertion and Reason are true, and Reason correctly explains the Assertion
ⓑ. Both Assertion and Reason are true, but Reason does not correctly explain the Assertion
ⓒ. Assertion is true and Reason is false, so Reason cannot correctly explain the Assertion
ⓓ. Assertion is false and Reason is true, so Reason cannot correctly explain the Assertion
107. Control cells form a compact metaphase plate. In treated cells, kinetochores remain attached to spindle fibres, but the fibres cannot generate effective movement, and chromosomes stay scattered. The strongest inference is that:
ⓐ. chromosome condensation depends on completed cytokinesis
ⓑ. kinetochore attachment normally begins only after centromere division
ⓒ. spindle forces are needed for equatorial chromosome alignment
ⓓ. nuclear-envelope reformation produces the metaphase plate
108. Consider the following statements about the metaphase plate. I. It represents the equatorial alignment of replicated chromosomes. II. It is produced through chromosome interactions with the spindle. III. It is a permanent membrane separating the future daughter cells. IV. Sister chromatids remain joined while chromosomes occupy it.
ⓐ. I and III only
ⓑ. II and IV only
ⓒ. I, II, III and IV
ⓓ. I, II and IV only
109. Arrange the following events from established metaphase to progressing anaphase. P. Replicated chromosomes occupy the metaphase plate. Q. Centromeres divide. R. Sister chromatids become independent daughter chromosomes. S. Daughter chromosomes move towards opposite poles.
ⓐ. P → Q → R → S
ⓑ. Q → P → R → S
ⓒ. P → R → Q → S
ⓓ. R → Q → P → S
110. A replicated chromosome lies at the equator with its sister chromatids joined at one constriction. The constriction divides, and the two resulting structures begin moving towards opposite poles. The cell has entered:
ⓐ. prophase, as chromosome condensation has just begun
ⓑ. metaphase, as chromosomes have only reached the equator
ⓒ. telophase, as daughter nuclei are being reconstituted
ⓓ. anaphase, as sister chromatids become daughter chromosomes
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