Unit 1: Introduction; Callus and Suspension Culture - Subjective Questions

BTY540 — Plant Biotechnology • Practice Questions with Detailed Answers

20 questions

1

Define plant tissue culture and briefly outline its historical background, mentioning the contributions of key scientists.

2

Explain the concept of cellular totipotency and its significance in plant tissue culture.

3

Describe the basic techniques involved in plant tissue culture.

4

Discuss the composition of a plant tissue culture medium, explaining the role of each major component.

5

Explain the process and importance of media optimization in plant tissue culture.

6

Distinguish between cell culture, tissue culture, and organ culture.

7

Define organogenesis and describe its types and the role of growth regulators in it.

8

Describe the various explant preparation and sterilization techniques used in plant tissue culture.

9

What is callus? Explain the process of initiation and maintenance of callus cultures in detail.

10

Explain the different types of callus culture.

11

Describe the initiation and maintenance of suspension cultures, including methods of maintenance.

12

Compare batch culture and continuous culture methods used in suspension cultures.

13

Explain the growth curve of cells in a batch suspension culture with a diagram description of its phases.

14

Distinguish between direct and indirect organogenesis with suitable examples.

15

Describe the various methods used to assess growth and viability of cells in suspension cultures.

16

Compare the MS medium with White's medium and explain why MS medium is most widely used.

17

Explain in detail the role of plant growth regulators (auxins and cytokinins) in tissue culture and the concept of the auxin-cytokinin ratio.

18

Describe in detail the complete procedure of media preparation in a plant tissue culture laboratory, including sterilization of the medium.

19

Discuss the applications of callus and suspension cultures in plant biotechnology.

20

Explain dedifferentiation and redifferentiation, and describe how these processes are essential for plant regeneration in vitro.