BIOLOGY NEET PYQ :DIVERSITY IN THE LIVING WORLD

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BIOLOGY NEET PYQ : DIVERSITY IN THE LIVING WORLD

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DIVERSITY IN THE LIVING WORLD

SPECIES CONCEPT

Exam: AIPMT 2003

Species are regarded as:

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DIVERSITY IN THE LIVING WORLD

BINOMIAL NOMENCLATURE

Exam: NEET 2019

Which is the correctly written scientific name of mango associated with Carolus Linnaeus?

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DIVERSITY IN THE LIVING WORLD

TAXONOMICAL HIERARCHY

Exam: NEET 2021

Which organism belongs to the family Muscidae?

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DIVERSITY IN THE LIVING WORLD

BINOMIAL NOMENCLATURE

Exam: NEET 2016 Phase 1

Which statement is contrary to the rules of binomial nomenclature?

 

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DIVERSITY IN THE LIVING WORLD

BIODIVERSITY

Exam: NEET 2020

According to Robert May, approximately how many species are estimated to exist globally?

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DIVERSITY IN THE LIVING WORLD

Exam: AIPMT 2011 Mains

Which feature is considered an exclusive characteristic of living organisms?

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DIVERSITY IN THE LIVING WORLD

TAXONOMICAL HIERARCHY

Exam: NEET 2016 Phase 2

Match the taxonomic categories of the housefly correctly.

Column I

  1. Family
    B. Order
    C. Class
    D. Phylum

Column II

  1. Diptera
    II. Arthropoda
    III. Muscidae
    IV. Insecta

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DIVERSITY IN THE LIVING WORLD

TAXONOMY AND SYSTEMATICS

Exam: AIPMT 2003

Biosystematics primarily aims at:

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DIVERSITY IN THE LIVING WORLD

TAXONOMICAL HIERARCHY

Exam: NEET 2017

In the classification of the horse, which represents its order?

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DIVERSITY IN THE LIVING WORLD

Exam: AIPMT 2007

Which characteristic most reliably distinguishes living organisms from non-living objects?

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DIVERSITY IN THE LIVING WORLD

TAXONOMICAL HIERARCHY

Exam: NEET 2022

Which taxonomic sequence is correct for animals?

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DIVERSITY IN THE LIVING WORLD

SPECIES CONCEPT

Exam: NEET 2016 Phase 2

The biological species concept is associated with:

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DIVERSITY IN THE LIVING WORLD

TAXONOMICAL HIERARCHY

Exam: AIPMT 2001

Which category is less general in its characteristics than genus?

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DIVERSITY IN THE LIVING WORLD

TAXONOMICAL HIERARCHY

Exam: NEET 2013 Karnataka

Tomato and potato have the maximum number of common characteristics at which taxonomic level?

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DIVERSITY IN THE LIVING WORLD

TAXONOMICAL HIERARCHY

Exam Concept: AIPMT 2001 / taxonomic hierarchy

Which taxonomic category contains the greatest number of common characteristics?

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DIVERSITY IN THE LIVING WORLD

BINOMIAL NOMENCLATURE

Exam: NEET 2019 Odisha

Which of the following is against the rules of scientific nomenclature?

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DIVERSITY IN THE LIVING WORLD

Exam: NEET 2016 Phase 2

In which situation can reproduction be considered synonymous with growth?

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DIVERSITY IN THE LIVING WORLD

BINOMIAL NOMENCLATURE

Exam: NEET 2023 Phase 2

In binomial nomenclature, the two components are:

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DIVERSITY IN THE LIVING WORLD

TAXONOMY AND SYSTEMATICS

Exam Concept Tested: AIPMT/NEET systematics questions

Which statement correctly describes the relationship between taxonomy and systematics?

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DIVERSITY IN THE LIVING WORLD

TAXONOMICAL HIERARCHY

Exam: NEET 2022

Which is the correct ascending order of taxonomic categories?

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DISCLAIMER

This content on UNIT 1: DIVERSITY IN THE LIVING WORLD has been prepared for educational and examination-preparation purposes only. It includes multiple-choice questions (MCQs), answers and explanations intended to help students understand and revise important concepts.

While reasonable care has been taken to maintain accuracy, students are advised to verify important facts, terminology and concepts with their official syllabus, standard textbooks, NCERT publications and other authoritative educational sources.

The questions and explanations are provided for practice and learning purposes and should not be considered an official question paper, official answer key or material issued by any examination authority.

The author/website owner does not guarantee that the same questions will appear in any particular examination and shall not be responsible for any error, omission or difference in interpretation.

For NEET and other examinations, candidates should always follow the latest official syllabus and instructions issued by the concerned examination authority.

This material is intended solely to support learning, revision, and self-assessment.

CHAPTER 1

THE LIVING WORLD & TAXONOMIC CONCEPTS

Chapter Overview

The living world around us is extremely diverse. It includes microscopic organisms such as bacteria and large organisms such as trees, elephants, and whales. Organisms differ in their structure, form, size, habitat, nutrition, reproduction, and many other characteristics.

Because of this enormous diversity, it is necessary to identify, name, classify, and study organisms systematically.

This chapter deals with the fundamental concepts required to understand biological diversity:

What is Living?

Biodiversity

Need for Classification

Taxonomy

Systematics

Species Concept

Taxonomical Hierarchy

Binomial Nomenclature

1. WHAT IS LIVING?

1.1 Meaning of Living

A living organism is a biological entity that possesses characteristic features of life such as cellular organisation, metabolism, growth, reproduction and the ability to respond to stimuli.

However, no single characteristic alone can perfectly define all living organisms.

The major characteristics associated with living organisms are:

  1. Growth
  2. Reproduction
  3. Metabolism
  4. Cellular organisation
  5. Response to stimuli
  6. Consciousness

1.2 Growth

Growth refers to a permanent and irreversible increase in size, mass or number of cells of an organism.

In living organisms, growth generally occurs due to:

Cell division

Increase in cell size

Accumulation of cellular materials

Growth in Plants

Plants may continue to grow throughout their life because certain tissues, particularly meristematic tissues, retain the ability to divide.

Growth in Animals

In most animals, growth occurs mainly during the early stages of life and becomes limited after maturity.

1.3 Growth in Non-Living Objects

Growth is not exclusively a characteristic of living organisms.

Non-living objects can also increase in size through the external accumulation of materials.

Examples:

Crystals

Sand dunes

Mountains

In these cases, growth occurs through the deposition of materials from outside.

In living organisms, growth occurs mainly through internal biological processes such as cell division and synthesis of cellular components.

1.4 Reproduction

Reproduction is the biological process by which organisms produce new individuals of their own kind.

It is broadly divided into two types:

A. Asexual Reproduction

Asexual reproduction generally involves a single parent and does not involve the fusion of gametes.

Examples:

Binary fission in Amoeba

Budding in Yeast

Budding in Hydra

Vegetative propagation in plants

Asexual reproduction generally produces offspring that are genetically very similar to the parent.

B. Sexual Reproduction

Sexual reproduction generally involves the formation and fusion of male and female gametes.

It contributes significantly to genetic variation among offspring.

1.5 Is Reproduction a Defining Property of Life?

Reproduction is an important characteristic of living organisms, but it cannot be considered an all-inclusive defining property of life.

Examples:

Mule is generally sterile.

Worker bees are generally sterile females.

Some individuals may be incapable of reproduction.

Despite being unable to reproduce, such organisms are living.

1.6 Metabolism

Metabolism refers to the sum total of all chemical and biochemical reactions occurring within a living organism or cell.

Metabolic reactions are essential for:

Energy production

Growth

Repair

Synthesis of biomolecules

Maintenance of cellular activities

Metabolism is broadly divided into:

Anabolism

Anabolism involves the synthesis of complex molecules from simpler molecules.

Example:

Amino acids → Proteins

Anabolic reactions generally require energy.

Catabolism

Catabolism involves the breakdown of complex molecules into simpler molecules.

Example:

Glucose → Carbon dioxide + Water + Energy

Catabolic reactions often release energy.

Therefore:

Metabolism = Anabolism + Catabolism

1.7 Importance of Metabolism

All living cells continuously perform numerous metabolic reactions.

For example:

Plants perform photosynthesis.

Cells perform cellular respiration.

Proteins are synthesized.

Complex substances are broken down.

DNA and other biomolecules are produced.

1.8 Cellular Organisation

All living organisms are composed of cells or are cellular in their organisation.

The cell is regarded as the basic structural and functional unit of life.

Organisms can be broadly classified according to the number of cells as:

Unicellular Organisms

These organisms consist of a single cell.

Examples:

Amoeba

Paramecium

Many bacteria

Many unicellular algae

A single cell performs all essential life functions.

Multicellular Organisms

These organisms consist of many cells.

Examples:

Plants

Humans

Most animals

In multicellular organisms, cells may become specialised for different functions.

1.9 Response to Stimuli

Living organisms can detect and respond to changes in their surroundings.

Such changes are called stimuli.

Examples of stimuli include:

Light

Temperature

Touch

Sound

Chemicals

Water availability

Gravity

The ability of an organism to respond to stimuli is an important characteristic of life.

1.10 Response to Stimuli in Plants

Plants also respond to environmental stimuli.

Examples:

Phototropism

Geotropism

Thigmotropism

Response of Mimosa pudica to touch

Although plants do not possess a nervous system like animals, they can detect environmental changes and respond through various physiological mechanisms.

1.11 Consciousness

Consciousness refers to the ability to sense and respond to changes in the internal and external environment.

In humans, consciousness is highly developed.

Animals also respond to their surroundings through specialised sensory and nervous systems.

1.12 Viruses and the Living–Non-Living Boundary

Viruses occupy a special position when discussing the distinction between living and non-living entities.

Outside a host cell, viruses generally remain inactive and do not carry out independent metabolic activities.

Inside a suitable host cell, however, they can:

Replicate

Use the host’s cellular machinery

Produce viral components

Thus, viruses are often described as lying at the boundary between living and non-living states.

1.13 Major Characteristics of Living Organisms

CharacteristicDescription
GrowthIncrease in size, mass, or cell number
ReproductionProduction of new individuals
MetabolismSum total of biochemical reactions
Cellular organisationCellular basis of life
Response to stimuliAbility to respond to environmental changes
ConsciousnessAbility to sense and respond to surroundings

Important Conclusion

Growth and reproduction are important characteristics, but neither alone can be used as a universal defining property of life.

Metabolism and cellular organisation are particularly fundamental characteristics.

2. BIODIVERSITY

2.1 Definition of Biodiversity

The term biodiversity refers to the variety and variability of living organisms present on Earth.

The living world contains an enormous number of organisms that differ in:

Structure

Size

Shape

Habitat

Nutrition

Reproduction

Behaviour

Genetic composition

This variety is collectively referred to as biological diversity or biodiversity.

2.2 Levels of Biodiversity

Biodiversity can be studied at different levels.

1. Genetic Diversity

Variation in genetic composition among individuals or populations of the same species is called genetic diversity.

Examples:

Different varieties of rice

Different varieties of wheat

Genetic variation among human populations

2. Species Diversity

The variety of species present in a particular region or ecosystem is called species diversity.

For example, a forest may contain numerous species of:

Plants

Birds

Mammals

Insects

Microorganisms

3. Ecosystem Diversity

The variety of ecosystems present in a geographical region is called ecosystem diversity.

Examples:

Forest ecosystems

Grassland ecosystems

Desert ecosystems

Wetland ecosystems

Marine ecosystems

2.3 Importance of Biodiversity

Biodiversity is important because it:

Maintains ecological balance.

Provides food resources.

Provides medicinal resources.

Provides genetic resources.

Supports ecosystem functioning.

Provides raw materials.

Contributes to ecosystem stability.

Supports various ecological interactions.

3. NEED FOR CLASSIFICATION

3.1 Meaning of Classification

Classification is the systematic arrangement of organisms into groups and categories based on their similarities and differences.

The enormous diversity of organisms makes their individual study difficult.

Classification provides an organised framework for studying this diversity.

3.2 Why is Classification Necessary?

1. Easy Identification

Classification helps scientists identify unknown organisms based on their characteristics.

2. Easy Study

Similar organisms can be studied together.

3. Understanding Similarities and Differences

Classification helps identify common and contrasting characteristics among organisms.

4. Organisation of Biodiversity

The enormous diversity of organisms can be arranged into manageable groups.

5. Understanding Relationships

Classification helps scientists understand relationships among organisms.

6. Scientific Communication

Standard classification and scientific names allow scientists around the world to communicate about organisms without confusion caused by local names.

3.3 Identification vs Classification

These two terms should not be confused.

Identification

Identification is the process of determining the identity of an unknown organism.

Classification

Classification is the process of arranging organisms into groups based on their similarities and differences.

4. TAXONOMY

4.1 Definition

Taxonomy is the branch of biology concerned with the identification, nomenclature, and classification of organisms.

Therefore:

Taxonomy = Identification + Nomenclature + Classification

4.2 Identification

Identification is the process of recognising an organism and determining its correct identity.

Identification is generally based on:

Morphological characters

Anatomical characters

Physiological characters

Reproductive characters

Molecular characteristics

4.3 Nomenclature

Nomenclature is the process of assigning standard scientific names to organisms according to internationally accepted rules.

Examples:

Human — Homo sapiens

Mango — Mangifera indica

Tiger — Panthera tigris

4.4 Classification

Classification involves arranging organisms into groups based on their similarities, differences and relationships.

Classification provides a hierarchical framework for studying living organisms.

5. SYSTEMATICS

5.1 Definition

Systematics is the scientific study of biological diversity and the relationships among organisms, including their evolutionary relationships.

Systematics therefore has a broader scope than traditional taxonomy.

5.2 Taxonomy vs Systematics

TaxonomySystematics
Deals with identification, nomenclature, and classificationDeals with diversity and relationships among organisms
Relatively narrower conceptBroader concept
Focuses strongly on classificationIncludes evolutionary relationships
Forms an important part of systematic biologyUses taxonomic and evolutionary information

6. SPECIES CONCEPT

6.1 What is a Species?

Species is the basic unit of biological classification.

According to the biological species concept, a species is generally defined as a group of organisms that can interbreed under natural conditions and produce fertile offspring.

6.2 Important Features of a Species

Members of the same species generally:

Share several common characteristics.

Have a common gene pool.

Can interbreed under natural conditions.

Produce fertile offspring.

6.3 Example of a Species

Humans belong to the species:

Homo sapiens

Members of this species can reproduce with one another and normally produce fertile offspring.

6.4 Reproductive Isolation

Different species are generally separated by reproductive barriers.

If two populations cannot successfully reproduce and produce fertile offspring, they may be considered separate species under the biological species concept.

6.5 Mule as an Example

A horse and a donkey can produce a mule.

However, a mule is generally sterile.

This illustrates that producing an offspring is not sufficient for considering two organisms members of the same biological species; the ability to produce fertile offspring is important.

7. TAXONOMICAL HIERARCHY

7.1 Definition

Organisms are classified into a series of categories arranged in a definite order.

The arrangement of these taxonomic categories from lower to higher levels is called the taxonomical hierarchy.

7.2 Major Taxonomic Categories

The major taxonomic categories are:

Species → Genus → Family → Order → Class → Phylum/Division → Kingdom

7.3 Species

Species is the lowest and most specific major taxonomic category.

Examples:

Homo sapiens

Panthera tigris

Mangifera indica

7.4 Genus

A genus is a group of closely related species.

Example:

The genus Panthera includes:

Panthera leo

Panthera tigris

Thus, closely related species are placed within the same genus.

7.5 Family

A family consists of one or more related genera.

For example:

Felidae is a family containing several genera of cats.

7.6 Order

An order consists of related families.

Example:

Carnivora is an order containing several related families.

7.7 Class

A class consists of related orders.

Example:

Mammalia is a class containing several orders.

7.8 Phylum

In animal classification, related classes are grouped into a phylum.

Example:

Chordata is a phylum containing several classes.

7.9 Division

In plant classification, the term division is traditionally used for a category comparable to phylum.

7.10 Kingdom

A kingdom is a broad taxonomic category containing related phyla or divisions.

Examples:

Plantae

Animalia

7.11 Hierarchy from Lower to Higher

The sequence is:

Species → Genus → Family → Order → Class → Phylum/Division → Kingdom

As we move upward:

The number of organisms generally increases.

Similarity among members generally decreases.

The category becomes broader.

7.12 Hierarchy from Higher to Lower

The reverse sequence is:

Kingdom → Phylum/Division → Class → Order → Family → Genus → Species

As we move downward:

The number of organisms generally decreases.

Similarity among members generally increases.

The category becomes more specific.

7.13 Taxon

A taxon is a group of organisms representing any category in the taxonomic hierarchy.

Examples:

Kingdom Animalia

Class Mammalia

Family Felidae

Genus Panthera

Species Homo sapiens

Each of these represents a taxon.

8. BINOMIAL NOMENCLATURE

8.1 Definition

Binomial nomenclature is the scientific system of naming organisms using two words.

The term “binomial” means:

Bi = two

Thus, each scientific name consists of two components.

8.2 Development of Binomial Nomenclature

Carolus Linnaeus (Carl Linnaeus) is widely associated with the development and standardisation of the binomial system of nomenclature.

He played a major role in establishing the systematic naming of organisms.

8.3 Components of a Scientific Name

A scientific name consists of:

1. Genus

The first word represents the genus.

Its first letter is capitalised.

2. Specific Epithet

The second word is the specific epithet.

It begins with a lowercase letter.

Example:

Homo sapiens

Homo = Genus

sapiens = Specific epithet

Together, the two words form the scientific name of the species.

8.4 Examples of Binomial Names

Common NameScientific Name
HumanHomo sapiens
MangoMangifera indica
TigerPanthera tigris
LionPanthera leo
PotatoSolanum tuberosum

8.5 Rules of Binomial Nomenclature

Rule 1: Two Words

The scientific name consists of two words.

Example:

Homo sapiens

Rule 2: Genus Begins with a Capital Letter

Example:

Homo

Rule 3: Specific Epithet Begins with a Lowercase Letter

Example:

sapiens

Rule 4: Italicisation

When printed or typed, the scientific name is written in italics.

Example:

Mangifera indica

Rule 5: Underlining in Handwriting

When handwritten, the two words are underlined separately.

Example:

Homo sapiens

Rule 6: Latin or Latinised Form

Scientific names are generally written in Latin or Latinised form.

8.6 Importance of Binomial Nomenclature

Common names vary between:

Countries

Regions

Languages

Local communities

A single organism may therefore have several common names.

Scientific names solve this problem by providing a standardised international name.

Advantages include:

Universal scientific communication

Avoidance of local-name confusion

Standardised identification

Better organisation of biological information

9. COMPLETE TAXONOMIC CLASSIFICATION OF HUMAN

Taxonomic CategoryHuman
KingdomAnimalia
PhylumChordata
ClassMammalia
OrderPrimates
FamilyHominidae
GenusHomo
SpeciesHomo sapiens

10. COMPLETE TAXONOMIC CLASSIFICATION OF MANGO

Taxonomic CategoryMango
KingdomPlantae
DivisionAngiospermae*
ClassDicotyledonae*
OrderSapindales
FamilyAnacardiaceae
GenusMangifera
SpeciesMangifera indica

Note: The terms Angiospermae and Dicotyledonae represent traditional classification terminology commonly encountered in school-level biology. Modern classification systems may use different higher-level groupings.

11. IMPORTANT COMPARISONS

11.1 Taxonomy vs Systematics

TaxonomySystematics
Identification, nomenclature and classificationStudy of diversity and relationships
Relatively narrowerBroader
Classification is a major focusClassification plus evolutionary relationships

11.2 Classification vs Nomenclature

ClassificationNomenclature
Arranges organisms into groupsGives organisms scientific names
Based on similarities and differencesBased on internationally accepted naming rules
Helps organise biological diversityHelps standardise biological communication

11.3 Species vs Genus

SpeciesGenus
Basic unit of classificationCategory above species
More specificMore inclusive
Contains organisms belonging to the same speciesContains closely related species

12. IMPORTANT NEET CONCEPTS

Concept 1

Growth alone is not a defining property of life.

Concept 2

Reproduction alone is not an all-inclusive defining property of life.

Concept 3

Metabolism is a fundamental characteristic of living organisms.

Concept 4

Cellular organisation is a fundamental feature of life.

Concept 5

Response to stimuli is an important characteristic of living organisms.

Concept 6

Species is the basic unit of biological classification.

Concept 7

Taxonomy includes identification, nomenclature, and classification.

Concept 8

Systematics is broader than taxonomy.

Concept 9

Scientific names follow internationally accepted rules.

Concept 10

The scientific name has two components: genus and specific epithet.

13. QUICK REVISION TABLE

TopicKey Point
LivingShows characteristic features of life
GrowthIncrease in size, mass, or cell number
ReproductionProduction of new individuals
MetabolismSum total of biochemical reactions
BiodiversityVariety of living organisms
ClassificationArrangement of organisms into groups
IdentificationDetermination of the identity of an organism
TaxonomyIdentification + Nomenclature + Classification
SystematicsDiversity + relationships among organisms
SpeciesBasic unit of classification
GenusGroup of closely related species
FamilyGroup of related genera
OrderGroup of related families
ClassGroup of related orders
PhylumGroup of related classes
DivisionPlant equivalent traditionally used for phylum
KingdomBroad taxonomic category
Binomial nomenclatureTwo-word scientific naming system
GenusFirst word; initial capital
Specific epithetSecond word; lowercase
Printed scientific nameItalicised
Handwritten scientific nameWords underlined separately

14. CHAPTER SUMMARY

The living world contains enormous biological diversity. Organisms differ in their structure, function, habitat, behaviour, and genetic composition.

Living organisms generally exhibit characteristics such as cellular organisation, metabolism, growth, reproduction, response to stimuli, and consciousness. However, growth and reproduction individually cannot be considered universal defining characteristics of life.

The variety of organisms is called biodiversity. It can be considered at genetic, species, and ecosystem levels.

Because the number of organisms is enormous, classification is necessary to organise biological diversity. Classification makes identification, study, comparison, and scientific communication easier.

Taxonomy deals with the identification, nomenclature, and classification of organisms. Systematics has a broader scope and also considers relationships, particularly evolutionary relationships, among organisms.

The species is the basic unit of biological classification. Taxonomic categories are arranged in a hierarchy:

Species → Genus → Family → Order → Class → Phylum/Division → Kingdom

Scientific names are assigned using binomial nomenclature, in which each organism receives a two-word name consisting of a genus and a specific epithet.

For example:

Homo sapiens

Here, Homo is the genus and sapiens is the specific epithet.

Binomial nomenclature provides a standardised system of naming organisms and eliminates much of the confusion caused by different common or regional names.

15. EXAM-READY TAKEAWAYS

  1. The cell is the basic structural and functional unit of life.
  2. Metabolism includes all biochemical reactions occurring in an organism.
  3. Metabolism consists broadly of anabolism and catabolism.
  4. Growth alone cannot define life.
  5. Reproduction alone cannot define life.
  6. Biodiversity refers to the variety and variability of living organisms.
  7. Classification organises organisms into groups based on their characteristics.
  8. Identification determines the identity of an organism.
  9. Taxonomy includes identification, nomenclature, and classification.
  10. Systematics is broader than taxonomy.
  11. Species is the basic unit of biological classification.
  12. Genus is a group of closely related species.
  13. Family consists of related genera.
  14. Order consists of related families.
  15. Class consists of related orders.
  16. Phylum consists of related classes.
  17. Division is traditionally used for plants in place of phylum.
  18. Kingdom is a broad taxonomic category.
  19. Binomial nomenclature uses two words for the scientific name.
  20. The first word represents the genus.
  21. The genus begins with a capital letter.
  22. The second word is the specific epithet.
  23. The specific epithet begins with a lowercase letter.
  24. Printed scientific names are italicised.
  25. Handwritten scientific names are underlined separately.
  26. Homo sapiens is the scientific name of humans.
  27. Mangifera indica is the scientific name of mango.
  28. Panthera tigris is the scientific name of tiger.
  29. Panthera leo is the scientific name of lion.
  30. Solanum tuberosum is the scientific name of potato.