Biology

Cell Cycle and Chromosomes

1,348 Questions

Explore a curated list of questions covering the cell cycle, mitosis, and meiosis. Topics include DNA replication, chromosomal structures, and genetic disorders. This material is essential for students preparing for biology and general science competitive exams.

Cell cycle eventsDNA replicationMeiosis processChromosomal structuresGenetic disorders

Cell Cycle and Chromosomes Questions

Multiple choice
  1. dicentric chromosomes

  2. monocentric chromosomes

  3. acentric chromosomes

  4. holocentric chromosome

  5. polycentric chromosome

Reveal answer Fill a bubble to check yourself
C Correct answer
Explanation

Acentric chromosomes are those that lack centromeres, i.e. the centromere is totally absent on the chromosome. These chromosomes are observed due to effects of chromosome-breaking process like irradiation.

Multiple choice
  1. The position at which the contractile ring assembles is dictated by the mitotic spindle.

  2. Abscission depends on septin filaments.

  3. The process of abscission physically cleaves this midbody into two.

  4. It begins shortly after the onset of sister chromatid separation.

  5. A contractile ring made of muscle myosin II and actin filaments assembles parallelly at the cell cortex.

Reveal answer Fill a bubble to check yourself
E Correct answer
Explanation

A contractile ring made of non-muscle myosin II and actin filaments assembles equatorially (in the middle of the cell) at the cell cortex (adjacent to the cell membrane). Myosin II uses the free energy released when ATP is hydrolysed to move along these actin filaments, constricting the cell membrane to form a cleavage furrow.

Multiple choice
  1. Meiosis occurs in eukaryotic life cycles involving sexual reproduction.

  2. Meiosis uses many of the same mechanisms as mitosis.

  3. Meiosis does not occur in archaea or bacteria.

  4. Before meiosis begins, during S phase of the cell cycle, the DNA of each chromosome is replicated.

  5. Meiosis begins with one haploid cell.

Reveal answer Fill a bubble to check yourself
E Correct answer
Explanation

Meiosis begins with one diploid cell containing two copies of each chromosome- one from the organism's mother and one from its father. The cell divides twice, potentially producing up to four haploid cells containing one copy of each chromosome.

Multiple choice
  1. This is a normal progeny likely of no significance.

  2. This is an abnormal chromosomal composition that would cause congenital anomalies if transmitted to a child.

  3. This rearrangement may lead to chromosomal imbalance in the offsprings and could explain multiple miscarriages in the female.

  4. This rearrangement may cause to dicentric or acentric chromosomes in the offsprings, which would probably not be appropriate with survival.

Reveal answer Fill a bubble to check yourself
C Correct answer
Explanation

This is a pericentric inversion. Crossing over within the inversion loop would lead to duplication and deficiency of parts of chromosome 8, which might cause congenital anomalies.

Multiple choice
  1. They are inert cellular objects seen in drosophilla.

  2. Banding pattern of polytene chromosome is constant in individuals of one species.

  3. Puffs seen in polytene chromosomes are the sites of gene expression.

  4. Giant chromosomes are not useful in studies of gene expression system.

  5. Formation of giant chromosomes happen in adult fly.

Reveal answer Fill a bubble to check yourself
C Correct answer
Explanation

Puffs seen in polytene chromosomes are the sites of gene expression, where DNA strands are unwinded and actively take part in transcription.

Multiple choice
  1. Zygotene stage

  2. Pachytene stage

  3. Leptotene stage

  4. Diakinesis

Reveal answer Fill a bubble to check yourself
B Correct answer
Explanation

Recombination of genes takes place at pachytene stage. During pachytene stage of meiosis I, non-sister adjacent chromatids in a tetrad, coil around each other at one or more points called Chiasmata. Chromatids break down at Chiasmata and then rejoin with the exchange of segments resulting in recombinants.