Cell Cycle And Cell Division MCQs With Answers – Part 3 (Class 11 Biology)
GKaim: Measure. Improve. Achieve.

Cell Cycle and Cell Division MCQs with Answers – Part 3 (Class 11 Biology)

Timer: Off
Random: Off

211. The observations below were recorded in four dividing cells.
CellSeparating or arranged unitsCentromere stateResulting relation
PHomologous chromosomes separatingUnsplitOne homologue moves towards each pole
QSister chromatids separatingSplitOne daughter chromosome moves towards each pole
RBivalents aligned at the equatorUnsplitHomologue separation has not begun
SChromosomes decondensing at polesSeparatedNuclear envelopes are re-forming
Which pair best contrasts the reductional separation of meiosis I with an equational sister-separation event?
ⓐ. Cells P and R
ⓑ. Cells P and Q
ⓒ. Cells Q and S
ⓓ. Cells R and S
212. Centromeres split prematurely while homologous chromosomes are beginning to segregate in anaphase I. The most immediate consequence would be:
ⓐ. formation of normal bivalents during the same division
ⓑ. restoration of the diploid condition at each pole
ⓒ. completion of meiosis II before telophase I
ⓓ. premature sister-chromatid separation during meiosis I
213. In a meiocyte where nuclear structures reappear after meiosis I, arrange the following events in their broad order. P. Homologous chromosomes reach opposite poles. Q. Chromosomes begin dispersing from their condensed state. R. Nuclear membranes and nucleoli reappear. S. Cytokinesis produces two cells forming a dyad.
ⓐ. Q → P → S → R
ⓑ. P → R → S → Q
ⓒ. R → P → Q → S
ⓓ. P → Q → R → S
214. Consider the following statements about telophase I. I. Nuclear membranes and nucleoli may reappear. II. Chromosomes may disperse without becoming fully extended. III. Cytokinesis may produce a dyad of haploid cells. IV. Sister chromatids separate after centromere division.
ⓐ. II, III and IV only
ⓑ. I and IV only
ⓒ. I, II and III only
ⓓ. I, II, III and IV
215. Use the cellular arrangement described here. Two chromosome groups lie at opposite poles. Each chromosome still consists of two sister chromatids. Nuclear envelopes are beginning to surround the groups, and a cytoplasmic partition is forming between them. The stage is:
ⓐ. metaphase I
ⓑ. telophase I
ⓒ. telophase II
ⓓ. anaphase II
216. A diploid meiocyte produces two cells. Each cell has one chromosome from every homologous pair, but every chromosome still contains two sister chromatids. Nuclear membranes are present, and the chromosomes remain partly condensed. These cells are:
ⓐ. telophase-I products forming a haploid dyad
ⓑ. mitotic daughter cells in the \(2n,2C\) state
ⓒ. telophase-II products forming a haploid tetrad
ⓓ. premeiotic cells entering the \(2n,4C\) state
217. Four cellular intervals are compared below.
IntervalPloidy and DNA stateDNA synthesisPosition in division sequence
P\(2n,2C\)NoBefore premeiotic S phase
Q\(2n,4C\)CompletedImmediately before meiosis I
R\(n,2C\)NoBetween meiosis I and meiosis II
S\(n,1C\)NoAfter meiosis II
Which ordered pair demonstrates the reductional change produced by meiosis I without an intervening round of DNA replication?
ⓐ. P → Q
ⓑ. R → S
ⓒ. Q → R
ⓓ. P → S
218. Meiocytes are supplied with a labelled DNA precursor only during the interval between meiosis I and meiosis II. The label is not incorporated into nuclear chromosomes, yet the cells later complete meiosis II normally. The strongest inference is:
ⓐ. interkinesis normally lacks DNA replication
ⓑ. homologues remain paired throughout interkinesis
ⓒ. chromosome number returns from \(n\) to \(2n\)
ⓓ. sister chromatids separate before prophase II
219. A graph plots DNA content per cell against meiotic progression. The curve falls from \(4C\) to \(2C\) after meiosis I, remains horizontal during interval P and falls to \(1C\) after meiosis II. Interval P represents:
ⓐ. interkinesis without DNA replication
ⓑ. a second S phase that restores \(4C\) DNA
ⓒ. pachytene with active crossing over
ⓓ. \(G_2\) before the first meiotic division
220. Assertion: Interkinesis includes a second S phase that prepares chromosomes for meiosis II. Reason: DNA replication does not normally occur between meiosis I and meiosis II.
ⓐ. 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
Subscribe
Notify of
guest
0 Comments
Scroll to Top