Cell Cycle And Cell Division MCQs With Answers – Part 4 (Class 11 Biology)
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Cell Cycle and Cell Division MCQs with Answers – Part 4 (Class 11 Biology)

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311. In a metaphase-I bivalent, both homologous chromosomes become attached to spindle fibres leading towards the same pole, while sister centromeres remain intact. If this arrangement persists, the most direct risk is:
ⓐ. normal homologue segregation to opposite meiosis-I poles
ⓑ. premature sister-chromatid separation within metaphase I
ⓒ. failure of equal homologue segregation during meiosis I
ⓓ. conversion of the bivalent into a mitotic chromosome
312. A diploid meiocyte of a species with \(2n=8\) has completed premeiotic S phase. During pachytene, one crossover occurs between non-sister chromatids of a homologous chromosome pair. Immediately after the exchange is completed, what are the chromosome count, chromatid count and DNA content of the whole cell?
ⓐ. \(16\) chromosomes, \(16\) chromatids and \(4C\) DNA
ⓑ. \(8\) chromosomes, \(8\) chromatids and \(2C\) DNA
ⓒ. \(4\) chromosomes, \(8\) chromatids and \(2C\) DNA
ⓓ. \(8\) chromosomes, \(16\) chromatids and \(4C\) DNA
313. Cell P is a haploid plant cell in mitotic metaphase. Cell Q is a metaphase-II cell produced by meiosis I. Both have the condition \(n,2C\) and align individual replicated chromosomes at the equator. Which evidence specifically identifies Q as meiotic?
ⓐ. Opposite-pole orientation of sister kinetochores at metaphase
ⓑ. Origin from a prior division that separated homologous chromosomes
ⓒ. Presence of two sister chromatids in each aligned chromosome
ⓓ. Persistence of undivided centromeres during metaphase alignment
314. During mitotic anaphase, Curve P records chromosome number in the complete undivided cell, while Curve Q records chromosome number at one pole. P rises from \(2n\) to \(4n\), but Q remains \(2n\). The divergence occurs because:
ⓐ. each pole receives \(4n\) because both daughter copies move together
ⓑ. DNA replication raises the whole-cell count to \(4n\) during anaphase
ⓒ. centromere division gives \(4n\) per cell but \(2n\) at each pole
ⓓ. cytokinesis reduces the whole-cell count to \(n\) before chromosome movement
315. A species has \(2n=12\). Compare two cells:
CellStageChromosomes in complete cellChromatidsDNA
PMetaphase I\(12\)\(24\)\(4C\)
QAnaphase II after all centromeres split\(12\)\(12\)\(2C\)
Why does the equal chromosome count not imply equal ploidy?
ⓐ. P is haploid, whereas Q is diploid after centromere division
ⓑ. Both are haploid, but P underwent an extra S phase before metaphase I
ⓒ. Both are diploid, but Q has lost half of its DNA during anaphase II
ⓓ. P is diploid; Q is haploid with a transient doubled anaphase-II count
316. Arrange the following nuclear-envelope changes in their normal meiotic order when telophase-I reconstitution occurs. P. The envelope disappears during late diakinesis. Q. It may re-form around chromosome groups in telophase I. R. It disappears again during prophase II. S. It forms around the four chromosome groups in telophase II.
ⓐ. P → Q → R → S
ⓑ. P → R → Q → S
ⓒ. R → P → S → Q
ⓓ. Q → P → R → S
317. Twenty reversibly quiescent cells receive a replacement signal. They require \(6\,\text{hours}\) to re-enter the active cycle and then complete one division every \(18\,\text{hours}\). If all cells divide synchronously and no cell is lost, how many cells are present \(42\,\text{hours}\) after stimulation?
ⓐ. \(320\)
ⓑ. \(40\)
ⓒ. \(160\)
ⓓ. \(80\)
318. Mitosis is selectively blocked in shoot apical meristems, while lateral cambium remains mitotically active. Mature cells continue normal metabolism. Which long-term growth pattern is most likely?
ⓐ. Continued increase in length, with reduced increase in thickness
ⓑ. Reduced increase in length, with continued increase in thickness
ⓒ. Normal growth in both dimensions through cell enlargement alone
ⓓ. Formation of haploid tissues in place of new meristematic cells
319. Assertion: Assuming no DNA loss, the four final products of one meiosis together contain the same total DNA as the original meiocyte immediately after premeiotic S phase. Reason: The decreases from \(4C\) to \(2C\) and then \(1C\) are per-cell changes caused by partitioning DNA among two and then four products.
ⓐ. 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
320. Evaluate the following statements. I. A \(2n,4C\) cell may be in \(G_2\), mitotic metaphase or metaphase I. II. An \(n,2C\) cell may be in interkinesis, metaphase II or \(G_2\) of a haploid mitotic cycle. III. A whole anaphase-II cell counted as \(2n\) must have restored diploidy. IV. The same \(n\)-\(C\) state can occur in different biological histories.
ⓐ. I, II and IV only
ⓑ. II and III only
ⓒ. I, II and III only
ⓓ. I and III only
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