CBSE Class 11 Biology Exemplar Chapter 15: Plant Growth and Development NCERT Solutions
This comprehensive set of NCERT Solutions for CBSE Class 11 Biology Exemplar, Chapter 15, focuses on 'Plant Growth and Development'. It covers essential concepts related to plant hormones, their roles, and interactions. The solutions provide clear explanations for multiple-choice questions and matching exercises, detailing the functions of ethylene, auxins, cytokinins, ABA, and gibberellins in processes like fruit ripening, apical dominance, stomatal closure, and bolting. Understanding these plant growth regulators is crucial for comprehending how plants grow and respond to their environment. These solutions are designed to help students grasp complex topics, clarify doubts, and prepare effectively for their board examinations by offering step-by-step explanations and accurate answers.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 11 |
| Subject | Biology Exemplar |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 15 |
Chapter summary
Chapter 15 of the CBSE Class 11 Biology Exemplar, 'Plant Growth and Development', delves into the intricate mechanisms of how plants grow and develop. The NCERT Solutions for this chapter provide a thorough explanation of plant growth regulators (hormones) such as ethylene, auxins, cytokinins, and gibberellins. It covers their specific functions, including their roles in fruit ripening, apical dominance, stomatal regulation, and developmental processes. The solutions also address synergistic and antagonistic interactions between these hormones, offering clarity on their complex interplay.
Learning outcomes
- Understand the role of ethylene in fruit ripening.
- Identify cytokinin as the hormone present in coconut water.
- Explain how cytokinin overcomes apical dominance.
- Match plant hormones with their specific functions.
- Define the synergistic action of hormones.
- Explain the purpose of waxing apples after harvesting.
Topics covered
Paper topics
- Plant Growth Regulators
- Ethylene
- Auxins (IAA)
- Abscisic Acid (ABA)
- Cytokinins
- Gibberellins (GA)
- Apical Dominance
- Fruit Ripening
- Stomatal Closure
- Bolting
- Synergistic Action of Hormones
- Hormone Functions
Important topics
- Functions of Ethylene
- Role of Cytokinin in Apical Dominance
- ABA and Stomatal Closure
- Synergistic Hormone Action
- Matching Plant Hormones to Functions
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Questions and Solutions
Multiple Choice Questions (MCQs) - Q. 1
- retarding ripening of tomatoes
- hastening of ripening of fruits
- slowing down ripening of apples
- Both (b) and (c)
Answer: (b) hastening of ripening of fruits
Multiple Choice Questions (MCQs) - Q. 2
- ABA (b) auxin (c) cytokinin (d) gibberellin
Answer: (c) cytokinin
Multiple Choice Questions (MCQs) - Q. 3
- (a) IAA
- (b) Ethylene
- (c) Gibberellin
- (d) Cytokinin
Answer: (d) Cytokinin
Match the following - Q. 4
| Column I | Column II |
| A. IAA | 1. Herring sperm DNA |
| B. ABA | 2. Bolting |
| C. Ethylene | 3. Stomatal closure |
| D. GA | 4. Weed-free lawns |
| E. Cytokinins | 5. Ripening of fruits |
(a) 4 1 5 2 3
(b) 5 4 2 3 1
(c) 4 1 2 5 3
(d) 5 3 1 4 2
- IAA (Indole-3-acetic acid): This is a type of auxin. Auxins, particularly synthetic ones like 2,4-D, are used as herbicides to kill broadleaf weeds, thus creating weed-free lawns. So, IAA matches with 4. Weed-free lawns.
- ABA (Abscisic Acid): ABA is known as the stress hormone. It plays a critical role in plant responses to environmental stress, such as drought, by inducing stomatal closure to reduce water loss through transpiration. So, ABA matches with 3. Stomatal closure.
- Ethylene: This gaseous hormone is famously involved in the ripening of fruits, accelerating the process and leading to changes in color, texture, and flavor. So, Ethylene matches with 5. Ripening of fruits.
- GA (Gibberellic Acid): Gibberellins are known to promote stem elongation. A notable effect is 'bolting', where the internodes of the stem elongate rapidly, making the plant appear very tall. So, GA matches with 2. Bolting.
- Cytokinins: Cytokinins were first isolated from herring sperm DNA. They are involved in cell division and differentiation. So, Cytokinins matches with 1. Herring sperm DNA.
Multiple Choice Questions (MCQs) - Q. 5
- when two hormones act together but bring about opposite effects
- when two hormones act together and contribute to the same function
- when one hormone affects more than one function
- when many hormones bring about any one function
Answer: (b) when two hormones act together and contribute to the same function
Multiple Choice Questions (MCQs) - Q. 6
- prevent sunlight for changing its colour
- prevent aerobic respiration by checking the entry of O2
- prevent ethylene formation due to injury
- make the apples look attractive
Answer: (b) prevent aerobic respiration by checking the entry of O2
Common mistakes
- Confusing the specific functions of different plant hormones.
- Misunderstanding the concept of synergistic hormone action.
- Incorrectly associating hormones with all plant growth processes.
- Not recognizing the role of ethylene in preventing spoilage.
Revision tips
- Create flashcards for each plant hormone and its primary functions.
- Draw diagrams illustrating the effects of hormones like auxin and cytokinin on plant structure.
- Focus on understanding the 'why' behind each answer, not just memorizing facts.
- Practice the matching exercise to reinforce hormone-function associations.
Practice MCQs
Q1. Which of the following is a primary function of ethylene in plant physiology?
Explanation: Ethylene is a plant hormone known for its role in accelerating the ripening process of fruits. It is often used commercially to ripen fruits artificially.
Q2. What plant hormone is found in high concentrations in coconut water?
Explanation: Coconut milk, which is the liquid endosperm of an immature coconut, is rich in the plant hormone cytokinin, essential for cell division and growth.
Q3. Which hormone can counteract the effect of apical dominance?
Explanation: Cytokinin acts antagonistically to auxin, which is responsible for apical dominance. Therefore, cytokinin helps to overcome this phenomenon, promoting lateral bud growth.
Q4. The synergistic action of hormones refers to:
Explanation: Synergistic action occurs when two or more hormones work together to produce a combined effect that is greater than the sum of their individual effects.
Q5. Why are apples often wrapped in waxed paper after harvesting?
Explanation: Waxed paper helps to reduce the rate of respiration in apples by limiting the entry of oxygen, thereby slowing down the ripening process and preventing spoilage.
Frequently asked questions
What is the main topic of CBSE Class 11 Biology Exemplar Chapter 15?
Chapter 15, 'Plant Growth and Development', covers the various plant growth regulators (hormones) and their specific roles in the life cycle of plants, including processes like ripening, dormancy, and growth regulation.
Which hormone is responsible for hastening the ripening of fruits?
Ethylene is the plant hormone primarily responsible for hastening the ripening of fruits.
How do cytokinins affect apical dominance?
Cytokinins counteract the effect of auxins, which cause apical dominance. By promoting the growth of lateral buds, cytokinins help overcome apical dominance.
What does 'synergistic action of hormones' mean in plant biology?
Synergistic action refers to the situation where two or more hormones work together to produce a combined effect that is greater than the sum of their individual effects, contributing to the same function.
Why is ABA important for plants, especially under stress?
Abscisic Acid (ABA) is a stress hormone that plays a crucial role in closing stomata under conditions of water scarcity, thereby reducing transpiration and conserving water.
What is the significance of matching hormones to their functions in this chapter?
Matching exercises help reinforce the understanding of the specific roles each plant hormone plays in different physiological processes, which is a key learning objective for this chapter.
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