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Cell Division Quick Quiz

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True or false questions on mitosis and meiosis.

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Cell Division Quick Quiz
 

Cell Division Quick QuizVersion en ligne

True or false questions on mitosis and meiosis.

par Jaylin Vielka Garcia
1

Crossing over occurs during metaphase II.

2

G1 checkpoint helps determine whether a cell will progress through the cycle.

3

Chromosomes condense after the onset of cytokinesis.

4

Mitosis occurs only in plant cells and never in animal cells.

5

Sister chromatids separate during metaphase II rather than anaphase II.

6

Fertilization does not involve the fusion of gametes.

7

Independent assortment does not contribute to genetic variation in offspring.

8

The G0 phase is a state of permanent cell cycle entry for all dividing cells.

9

The number of chromosome sets remains constant throughout meiosis.

10

In plant cells, the cleavage furrow is formed to separate daughter cells during cytokinesis.

11

Meiosis reduces the chromosome number from diploid to haploid, producing nonidentical daughter cells.

12

MPF is a cyclin-Cdk complex that triggers the cell’s passage past the G2 checkpoint into M phase.

13

Crossing over produces recombinant chromosomes, which combine DNA inherited from each parent.

14

Mitosis is conventionally broken down into five stages: prophase, prometaphase, metaphase, anaphase, and telophase.

15

The Pac-Man mechanism describes microtubule depolymerization at kinetochores during anaphase.

16

Meiosis reduces the number of chromosome sets from diploid to haploid.

17

Random fertilization and crossing over both contribute to genetic variation.

18

DNA replication occurs during meiosis II.

19

The nucleus remains intact during all stages of mitosis.

20

A zygote immediately becomes a multicellular organism without mitotic divisions.

21

Cytokinesis occurs before mitosis in the cell cycle.

22

Kinetochores are protein complexes associated with centromeres that attach microtubules.

23

Anchorage dependence requires cells to be attached to a substratum to divide.

24

During metaphase, chromosomes line up at the metaphase plate midway between the two poles.

25

In meiosis II, sister chromatids separate just like in mitosis.

26

Meiosis II reduces the chromosome number from haploid to diploid.

27

If a cell receives a go-ahead signal at the G1 checkpoint, it will usually complete the S, G2, and M phases and divide.

28

Cyclins and cyclin-dependent kinases (Cdks) regulate the cell cycle.

29

Crossing over occurs after meiosis II.

30

In anaphase, sister chromatids remain attached at the centromere and do not separate.

31

The mitotic spindle forms only after the nuclear envelope breaks down in prophase.

32

During prophase, chromosomes condense and become visible under a light microscope.

33

Sister chromatids separate and move toward opposite poles during anaphase.

34

Mitosis is conventionally broken down into five stages: prophase, prometaphase, metaphase, anaphase, and telophase.

35

Kinetochore microtubules are not involved in chromosome movement during metaphase.

36

The mitotic spindle includes the centrosomes, spindle microtubules, and the asters.

37

In animal cells, cytokinesis occurs by cleavage to form a cleavage furrow.

38

Most cell divisions in somatic cells are accompanied by mitosis and cytokinesis.

39

Cancer cells often lose normal cell cycle controls and can form tumors.

40

During metaphase, chromosomes are randomly distributed to poles without alignment.

41

Mitosis results in four genetically identical daughter cells.

42

The cell cycle can be halted at multiple checkpoints to ensure proper division.

43

Malignant tumors invade surrounding tissues and can metastasize to distant sites.

44

Gametes are the only haploid cells, produced by meiosis.

45

Independent assortment leads to a combinatorial increase in possible gamete genotypes.

46

Density-dependent inhibition helps regulate cell division by preventing overcrowding.

47

Cohesins hold sister chromatids together until they are separated in anaphase.

48

The cell cycle is regulated by a molecular control system with checkpoints.

49

Meiosis produces clones that are genetically identical to the parent organism.

50

External growth factors can influence cell division, including platelet-derived growth factor (PDGF).

51

Nonkinetochore microtubules from opposite poles overlap and push against each other during anaphase.

52

Binary fission is the process used by eukaryotic cells to divide.

53

All somatic cells are haploid.

54

G2 checkpoint ensures that DNA replication has completed before entering mitosis.

55

Plant cells perform cytokinesis through cleavage furrow formation in all cases.

56

The cell cycle clock operates independently of cyclins and Cdks.

57

All cancer cells always respond to growth factors and normal regulatory signals.

58

Kinetochore microtubules shorten by depolymerizing at the polymerase ends during anaphase.

59

Cytokinesis completes cell division by dividing the cytoplasm after mitosis.

60

Meiosis I includes prophase I, metaphase I, anaphase I, and telophase I followed by cytokinesis.

61

In plant cells, cytokinesis occurs by the formation of a cell plate.

62

The G1 checkpoint is the only checkpoint in the cell cycle.

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