Unit 2: Chromosomal architecture, cell division and genetic principles - Subjective Questions

GPB203 — Principles Of Genetics • Practice Questions with Detailed Answers

20 questions

1

Describe the structural organization of a typical metaphase chromosome with the help of a suitable labeled description.

2

Define chromonemata and explain their organization and significance in chromosomes.

3

Distinguish among chromosome matrix, chromonemata and chromomeres.

4

Explain the structure and functions of the centromere. Classify chromosomes according to centromere position.

5

What is a secondary constriction? Differentiate it from the primary constriction and explain the role of the nucleolar organizer region.

6

Describe the structure and biological importance of telomeres.

7

Describe polytene chromosomes and explain why they are useful in genetic and cytological studies.

8

Explain the structure, occurrence and functions of lampbrush chromosomes.

9

Write an explanatory note on special chromosome types, including B chromosomes and holocentric chromosomes.

10

State and explain the chromosomal theory of inheritance.

11

Discuss the cytological and experimental evidence supporting the chromosomal theory of inheritance.

12

Describe the stages of the eukaryotic cell cycle and identify the major events occurring in each stage.

13

Explain the major cell-cycle checkpoints and their importance in maintaining genomic stability.

14

Describe the stages of mitosis and the major chromosomal events occurring during each stage.

15

Explain the biological significance of mitosis and describe how errors in mitosis may affect an organism.

16

Describe meiosis I and explain why it is called reductional division.

17

Compare meiosis II with mitosis, mentioning both similarities and differences.

18

Explain the substages of meiotic prophase I, emphasizing synapsis, crossing over and chiasma formation.

19

Differentiate between mitosis and meiosis with respect to mechanism, products and biological significance.

20

Show how chromosome behavior during meiosis provides the physical basis of Mendel's laws of segregation and independent assortment.