CBSE Class 11 Biology Exemplar Chapter 2: Biological Classification NCERT Solutions
CBSE Class 11 Biology Exemplar, Chapter 2: Biological Classification delves into the fascinating world of organismal diversity. This chapter introduces the foundational five-kingdom classification system proposed by R.H. Whittaker, providing a framework to understand the vast array of life on Earth. We explore the defining characteristics of each kingdom, including the unique features of Monera, the diverse group of Protista, and the intriguing nature of viruses, which exist at the edge of life. The solutions clarify complex concepts such as extremophiles like halophiles, the fascinating life cycle of slime molds, the symbiotic relationship in mycorrhiza, and the formation of dikaryons in fungi. Mastering these topics is essential for grasping the principles of biological classification and appreciating the interconnectedness of living organisms. These NCERT Solutions offer clear, concise explanations to aid students in their preparation for board exams and competitive entrance tests.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 11 |
| Subject | Biology Exemplar |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 2 |
Chapter summary
Chapter 2 of the CBSE Class 11 Biology Exemplar focuses on Biological Classification. The NCERT Solutions provided here cover the five-kingdom classification system, distinguishing features of Monera, Protista, Fungi, and other groups. It delves into specific organisms and their characteristics, such as halophiles and slime molds, and explores symbiotic relationships like mycorrhiza. The solutions also touch upon the discovery and nature of viruses. This chapter is fundamental for grasping the evolutionary relationships and systematic organization of living organisms.
Learning outcomes
- Understand the principles of biological classification and the five-kingdom system.
- Differentiate between prokaryotic and eukaryotic organisms.
- Identify the characteristics of various kingdoms: Monera, Protista, and Fungi.
- Explain the concept of halophiles and their habitat.
- Describe the unique features of slime molds.
- Define and explain the symbiotic relationship in mycorrhiza.
- Understand the significance of the term 'contagium vivum fluidum' in relation to viruses.
Topics covered
Paper topics
- Biological Classification
- Five Kingdom Classification
- Monera
- Protista
- Fungi
- Slime Molds
- Halophiles
- Mycorrhiza
- Dikaryon
- Viruses
- Contagium Vivum Fluidum
- R.H. Whittaker
Important topics
- Five Kingdom Classification
- Characteristics of Protista
- Characteristics of Fungi
- Slime Molds
- Mycorrhiza
- Viruses and their discovery
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Questions and Solutions
Multiple Choice Questions (MCQs) - 1
- Monera
- Protista
- Fungi
- Bacteria
Protista is a diverse group comprising unicellular eukaryotic organisms. These organisms can be autotrophic (photosynthetic), heterotrophic, or parasitic. In contrast, Monera includes prokaryotic organisms like bacteria. Fungi are eukaryotic but are predominantly multicellular, with yeast being a notable unicellular exception. Therefore, all unicellular eukaryotes fall under the kingdom Protista.
Multiple Choice Questions (MCQs) - 2
- RH Whittaker
- C Linnaeus
- A Roxberg
- Virchow
In 1969, the American taxonomist R.H. Whittaker proposed a five-kingdom classification system to establish a more phylogenetic basis for organizing life. The five kingdoms are Monera, Protista, Fungi, Plantae, and Animalia. Carl Linnaeus, on the other hand, developed the earlier two-kingdom classification system, dividing organisms into Plantae and Animalia. Virchow is associated with cell theory, not the five-kingdom classification.
Multiple Choice Questions (MCQs) - 3
- methanogens
- halophiles
- heliophytes
- thermoacidophiles
Halophiles are microorganisms that thrive in environments with high salt concentrations. The term 'halophile' originates from Greek words meaning 'salt-loving'. Methanogens are bacteria that produce methane under anaerobic conditions. Heliophytes are plants that grow best in direct sunlight. Thermoacidophiles are extremophilic archaea that live in hot, acidic environments.
Multiple Choice Questions (MCQs) - 4
- Monera
- Protista
- Fungi
- Slime molds
Slime molds are saprophytic protists that exhibit characteristics such as naked cytoplasm (protoplasm not enclosed by a cell wall), multinucleated structure (forming a plasmodium), and a saprophytic mode of nutrition, feeding on decaying organic matter. Monerans are prokaryotes. Protists are eukaryotic but typically have a cell membrane around their cytoplasm. Fungi possess cell walls made of chitin and do not typically have naked cytoplasm.
Multiple Choice Questions (MCQs) - 5
- lichen
- fern
- mycorrhiza
- BGA
Mycorrhiza refers to the symbiotic association between the fungi and the roots of higher plants, such as gymnosperms and angiosperms. In this relationship, the fungus benefits from the plant by obtaining carbohydrates and shelter, while the plant benefits from the fungus through enhanced absorption of water and mineral nutrients from the soil. Lichens are a symbiotic association between algae and fungi. Ferns are vascular plants belonging to pteridophytes, and BGA stands for blue-green algae, which are prokaryotic cyanobacteria.
Multiple Choice Questions (MCQs) - 6
- meiosis is arrested
- the two haploid cells do not fuse immediately
- cytoplasm does not fuse
- None of the above
A dikaryon is a stage in the life cycle of certain fungi where two haploid cells fuse, but their nuclei do not immediately fuse. This results in a cell containing two distinct haploid nuclei, referred to as a dikaryotic cell (n+n). Meiosis is a process of cell division that reduces chromosome number and does not directly lead to dikaryon formation. Cytoplasmic fusion (plasmogamy) precedes nuclear fusion (karyogamy) in many fungal life cycles, leading to the dikaryotic stage.
Multiple Choice Questions (MCQs) - 7
- DJ Ivanowsky
- MW Beijernek
- Stanley
- Robert Hook
M.W. Beijerinck, a Dutch microbiologist, proposed the concept of 'contagium vivum fluidum', which translates to 'contagious living fluid'. He used this term to describe the infectious agent of tobacco mosaic disease, recognizing it as something smaller than a bacterium and capable of passing through filters. D.J. Ivanowsky is credited with discovering viruses and their filterable nature. Stanley Miller is known for his experiments on the origin of life, and Robert Hooke was the first to observe and describe cells.
Common mistakes
- Confusing prokaryotic (Monera) with eukaryotic organisms (Protista, Fungi).
- Misidentifying the characteristics of different kingdoms.
- Confusing symbiotic relationships like mycorrhiza with lichens.
- Incorrectly recalling the proposer of the five-kingdom classification.
Revision tips
- Focus on the defining characteristics of each of the five kingdoms.
- Pay close attention to the differences between Monera and Protista.
- Understand the specific examples and their unique features (e.g., slime molds, halophiles).
- Review the key scientists and their contributions mentioned in the chapter.
- Practice drawing diagrams or creating flowcharts to represent classification.
Practice MCQs
Q1. All eukaryotic unicellular organisms are classified under which kingdom?
Explanation: Protista is a kingdom that includes all unicellular eukaryotic organisms. Monera includes prokaryotes, and while Fungi can be unicellular (like yeast), they are primarily multicellular eukaryotes.
Q2. Who proposed the five-kingdom system of classification?
Explanation: R.H. Whittaker, an American taxonomist, proposed the five-kingdom classification in 1969 to establish a more phylogenetic system.
Q3. Organisms that thrive in environments with high salt concentrations are known as:
Explanation: Halophiles are salt-loving organisms. Methanogens produce methane, heliophytes prefer sunlight, and thermoacidophiles live in hot, acidic conditions.
Q4. Which of the following is characterized by naked cytoplasm, multinucleated structure, and saprophytic nutrition?
Explanation: Slime molds exhibit these characteristics. They are saprophytic protists with multinucleated plasmodia (naked cytoplasm) and lack a cell wall.
Q5. The symbiotic association between the roots of higher plants and fungi is termed:
Explanation: Mycorrhiza is the mutualistic relationship between fungi and plant roots, where fungi help in nutrient absorption for the plant.
Q6. A dikaryon is formed when:
Explanation: A dikaryon is a stage in the life cycle of some fungi where two haploid cells fuse, but their nuclei remain separate within the same cell for a period.
Q7. The term 'contagium vivum fluidum' was proposed by:
Explanation: M.W. Beijerinck proposed 'contagium vivum fluidum' (contagious living fluid) to describe the infectious agent of tobacco mosaic disease, which we now know as a virus.
Frequently asked questions
What is the main focus of Chapter 2, Biological Classification for Class 11 Biology?
Chapter 2 focuses on the principles and systems of classifying living organisms, primarily detailing the five-kingdom classification proposed by R.H. Whittaker and the characteristics of each kingdom.
Which kingdoms are covered in these NCERT Solutions for Chapter 2?
These solutions cover the key kingdoms: Monera, Protista, and Fungi, along with specific examples and related concepts like slime molds and viruses.
What is the significance of understanding 'halophiles' and 'mycorrhiza' in this chapter?
'Halophiles' are organisms adapted to salty environments, illustrating extremophiles. 'Mycorrhiza' explains a crucial symbiotic relationship between fungi and plants, vital for nutrient uptake.
How do these solutions help in preparing for exams?
The solutions provide clear, rewritten explanations for each question, helping students grasp complex concepts, understand problem-solving approaches, and revise effectively for board exams and other competitive tests.
Who proposed the five-kingdom classification system discussed in Chapter 2?
The five-kingdom classification system was proposed by the American taxonomist R.H. Whittaker in 1969.
What does 'contagium vivum fluidum' refer to?
Proposed by M.W. Beijerinck, 'contagium vivum fluidum' means 'contagious living fluid' and was an early description of viruses, highlighting their infectious and fluid-like nature.
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