Unit 6: Genetic material and molecular mechanisms of gene expression - Subjective Questions

GPB203 — Principles Of Genetics • Practice Questions with Detailed Answers

20 questions

1

Define genetic material. What essential properties must a molecule possess to function as genetic material?

2

Describe the major structural forms of DNA and compare A-DNA, B-DNA, and Z-DNA.

3

Classify the major types of cellular RNA and explain their functions.

4

Explain the Watson-Crick model of DNA structure and state how the model accounts for faithful replication.

5

Describe the experimental evidence demonstrating that DNA is the genetic material.

6

Explain semiconservative DNA replication and describe the Meselson-Stahl experiment that verified it.

7

Describe the molecular mechanism of DNA replication at a replication fork.

8

Why is DNA synthesis continuous on one strand and discontinuous on the other? Explain the roles of Okazaki fragments and DNA ligase.

9

Discuss the end-replication problem in eukaryotic chromosomes and explain the role of telomerase.

10

Define transcription and describe its initiation, elongation, and termination in prokaryotes.

11

Compare transcription in prokaryotes and eukaryotes.

12

Describe the post-transcriptional processing of eukaryotic pre-mRNA and explain its significance.

13

State the important characteristics of the genetic code and explain wobble pairing.

14

Explain how tRNA structure and aminoacyl-tRNA synthetases ensure accurate translation.

15

Describe the initiation, elongation, and termination of protein synthesis.

16

Differentiate transcription and translation with respect to template, machinery, direction, product, and cellular location.

17

Trace the development of the gene concept from the classical unit of heredity to the modern molecular definition.

18

Describe the structure of a typical eukaryotic protein-coding gene and state the function of each major region.

19

Explain the operon concept using the lac operon as an example of inducible gene regulation.

20

Explain the major levels at which eukaryotic gene expression is regulated.