1. What is Diversity in the Living World?
The Earth contains an enormous variety of organisms that differ in:
- Size
- Shape
- Structure
- Habitat
- Nutrition
- Reproduction
- Life processes
- Cellular organisation
This variety among living organisms is called biological diversity or biodiversity.
Examples
| Organism | Important feature |
|---|---|
| Bacteria | Microscopic, generally unicellular |
| Amoeba | Unicellular eukaryote |
| Mushroom | Multicellular fungus |
| Mango tree | Multicellular photosynthetic plant |
| Human | Complex multicellular animal |
2. Biodiversity
Biodiversity refers to the variety of living organisms present on Earth.
It can be studied at different levels.
| Level | Meaning | Example |
|---|---|---|
| Genetic diversity | Variation within a species | Different varieties of mango |
| Species diversity | Variety of species | Tiger, lion, elephant |
| Ecosystem diversity | Variety of ecosystems | Forest, desert, pond |
3. Biological Classification
Because millions of organisms exist on Earth, studying each organism individually is difficult.
Therefore, organisms are grouped based on their similarities and differences.
This process is called biological classification.
Importance of classification
- Makes the study of organisms easier
- Helps in identification
- Shows similarities and differences
- Helps understand evolutionary relationships
- Provides a systematic arrangement of organisms
4. Taxonomy
Taxonomy is the science of:
- Identification
- Nomenclature
- Classification
Easy formula
Taxonomy = Identification + Nomenclature + Classification
Identification
Recognition of an organism and determining its correct identity.
Nomenclature
Giving a scientific name to an organism.
Classification
Placing organisms into appropriate groups based on their characteristics.
5. Systematics
Systematics deals with the diversity of organisms as well as their evolutionary relationships.
Difference
| Taxonomy | Systematics |
|---|---|
| Identification, nomenclature and classification | Classification along with evolutionary relationships |
| More focused on taxonomic study | Broader concept |
NEET Point
Systematics considers evolutionary relationships among organisms.
6. Binomial Nomenclature
The system of giving each organism a scientific name consisting of two words is called binomial nomenclature.
It was developed and popularised by Carolus Linnaeus.
Two parts of a scientific name
- Genus
- Specific epithet
Example
Mangifera indica
- Mangifera → Genus
- indica → Specific epithet
Another example:
Homo sapiens
- Homo → Genus
- sapiens → Specific epithet
7. Rules of Binomial Nomenclature
- Genus starts with a capital letter.
- Specific epithet starts with a small letter.
- Scientific names are written in italics when printed.
- When handwritten, the two words are underlined separately.
- Scientific names are generally derived from Latin or Latinised words.
Example
Printed:
Homo sapiens
Handwritten:
Homo sapiens — each word underlined separately.
8. Why Scientific Names are Necessary
Common names vary from one region or language to another.
Scientific names provide a standard name that can be understood internationally.
Example
The organism commonly called “mango” has the scientific name:
Mangifera indica
This avoids confusion caused by different local names.
9. Taxonomic Categories
Organisms are arranged in a hierarchical system called taxonomic hierarchy.
Main hierarchy
Species → Genus → Family → Order → Class → Phylum → Kingdom
From highest to lowest:
Kingdom → Phylum → Class → Order → Family → Genus → Species
Memory Trick
K P C O F G S
King Philip Came Over For Good Soup
10. Species
Species is the basic unit of classification.
A species generally consists of organisms that can interbreed under natural conditions and produce fertile offspring.
Examples
- Homo sapiens → Human
- Panthera tigris → Tiger
- Mangifera indica → Mango
NEET Point
Species is the lowest and basic taxonomic category.
11. Genus
A genus contains closely related species having several common characteristics.
Example
Genus Panthera includes:
- Panthera tigris → Tiger
- Panthera leo → Lion
- Panthera pardus → Leopard
Thus, different species can belong to the same genus.
12. Family
A family consists of related genera.
Example
Family Felidae includes genera such as:
- Panthera
- Felis
Family is a higher category than genus.
13. Order
An order consists of related families.
Example
Order Carnivora includes families such as:
- Felidae
- Canidae
14. Class
A class consists of related orders.
Example
Class Mammalia includes orders such as:
- Primates
- Carnivora
- Rodentia
15. Phylum
A phylum consists of related classes.
Example
Phylum Chordata includes classes such as:
- Mammalia
- Aves
- Reptilia
- Amphibia
Important
In plants, the term Division is commonly used instead of Phylum.
16. Kingdom
Kingdom is a very high taxonomic category containing related phyla or divisions.
Examples:
- Kingdom Animalia
- Kingdom Plantae
17. Taxonomic Hierarchy — Human Example
| Taxonomic category | Human |
|---|---|
| Kingdom | Animalia |
| Phylum | Chordata |
| Class | Mammalia |
| Order | Primates |
| Family | Hominidae |
| Genus | Homo |
| Species | Homo sapiens |
Important Trend
As we move:
Species → Kingdom
- Number of organisms increases
- Diversity increases
- Common characteristics decrease
As we move:
Kingdom → Species
- Number of organisms decreases
- Similarity increases
- Common characteristics increase
18. Taxon
A taxon is a group of organisms placed at any particular rank of the taxonomic hierarchy.
Examples:
- Species is a taxon.
- Genus is a taxon.
- Family is a taxon.
- Kingdom is a taxon.
Remember
Taxonomic category = rank
Taxon = actual group placed at that rank
19. Taxonomical Aids
Tools and resources used for identification, classification and study of organisms are called taxonomical aids.
Major taxonomical aids include:
- Herbarium
- Botanical gardens
- Museums
- Zoological parks
- Keys
- Flora
- Manuals
- Monographs
20. Herbarium
A herbarium is a collection of dried, pressed and preserved plant specimens mounted on sheets.
Main steps
Collection → Pressing → Drying → Mounting → Labelling → Preservation
Herbarium sheet generally contains
- Scientific name
- Family
- Common/local name
- Collection location
- Collection date
- Collector’s name
Uses
- Plant identification
- Reference material
- Taxonomic research
- Comparative studies
NEET Fact
Herbarium = collection of dried, pressed and preserved plant specimens.
21. Botanical Gardens
A botanical garden is a collection of living plants maintained for scientific study, education and conservation.
Uses
- Plant identification
- Research
- Education
- Conservation
- Study of plant diversity
Difference
Herbarium → Preserved dried plants
Botanical garden → Living plants
22. Biological Museums
Museums contain preserved specimens of plants and animals for study and reference.
Specimens may include
- Preserved animals
- Insects
- Skeletons
- Plant specimens
- Preserved organisms in containers
Uses
- Identification
- Study
- Teaching
- Reference
23. Zoological Parks
Zoological parks or zoos maintain wild animals in protected and controlled conditions.
Uses
- Study of animal behaviour
- Conservation
- Captive breeding
- Education
- Public awareness
Difference
Botanical garden → Living plants
Zoological park → Living wild animals
24. Key : taxonomical aid
A key is a taxonomical aid used for identifying organisms based on their contrasting characteristics.
Example
Suppose a plant has:
- Simple leaves → Option A
- Compound leaves → Option B
By repeatedly selecting between contrasting features, the organism can be identified.
Important term
A pair of contrasting statements in a key is called a couplet.
NEET Fact
Key is based on contrasting characters.
25. Flora
Flora is an account of the plants found in a particular geographical area.
Example
A flora describing the plants of a particular state or region.
26. Manual
A manual provides information useful for identifying organisms found in a particular area.
27. Monograph
A monograph is a detailed account of a particular taxon.
Example
A detailed study of a particular genus or family.
28. Five Kingdom Classification
The five-kingdom classification was proposed by R.H. Whittaker in 1969.
The five kingdoms are:
- Monera
- Protista
- Fungi
- Plantae
- Animalia
Main criteria used
- Cell structure
- Body organisation
- Mode of nutrition
- Reproduction
- Phylogenetic relationships
29. Kingdom Monera
Monera includes prokaryotic organisms.
Characteristics
- Prokaryotic
- Mostly unicellular
- True nucleus absent
- Nuclear membrane absent
- Membrane-bound organelles absent
- Cell wall generally present
- Reproduction mainly asexual
- Autotrophic or heterotrophic nutrition
Examples
- Bacteria
- Cyanobacteria
- Archaebacteria
- Mycoplasma
30. Kingdom Protista
Protista mainly contains unicellular eukaryotic organisms.
Characteristics
- Eukaryotic
- Mostly unicellular
- True nucleus present
- Membrane-bound organelles present
- Mostly aquatic
- Autotrophic or heterotrophic
Examples
- Amoeba
- Paramecium
- Euglena
- Diatoms
- Slime moulds
31. Kingdom Fungi
Fungi are eukaryotic heterotrophic organisms.
Characteristics
- Eukaryotic
- Mostly multicellular
- Yeast is unicellular
- Cell wall made mainly of chitin
- Chlorophyll absent
- Heterotrophic
- Nutrition generally absorptive
- Sexual and asexual reproduction occur
Examples
| Fungus | Example |
|---|---|
| Yeast | Saccharomyces |
| Bread mould | Rhizopus |
| Mushroom | Agaricus |
| Penicillium | Penicillium |
32. Kingdom Plantae
Plantae generally includes:
- Multicellular organisms
- Eukaryotic organisms
- Photosynthetic organisms
- Chlorophyll-containing organisms
- Cell wall-containing organisms
- Mainly autotrophic organisms
Examples
- Algae
- Bryophytes
- Pteridophytes
- Gymnosperms
- Angiosperms
33. Kingdom Animalia
Animalia includes:
- Multicellular organisms
- Eukaryotic organisms
- Heterotrophic organisms
- Organisms without cell walls
- Generally motile organisms
- Organisms with complex body organisation
Examples
- Earthworm
- Fish
- Frog
- Bird
- Human
34. Five Kingdom Classification — Quick Revision
| Kingdom | Cell type | Organisation | Nutrition | Example |
|---|---|---|---|---|
| Monera | Prokaryotic | Mostly unicellular | Auto/Heterotrophic | Bacteria |
| Protista | Eukaryotic | Mostly unicellular | Auto/Heterotrophic | Amoeba |
| Fungi | Eukaryotic | Mostly multicellular | Heterotrophic | Mushroom |
| Plantae | Eukaryotic | Multicellular | Mainly autotrophic | Mango |
| Animalia | Eukaryotic | Multicellular | Heterotrophic | Human |
35. Three-Domain System
Carl Woese proposed the three-domain system based largely on molecular comparisons, particularly ribosomal RNA.
The three domains are:
- Archaea
- Bacteria
- Eukarya
Important
Both Archaea and Bacteria are prokaryotic, whereas Eukarya contains eukaryotic organisms.
36. Archaea
Archaea are prokaryotic organisms with characteristics distinct from typical bacteria.
Many archaea are found in extreme environments.
Major groups
- Methanogens
- Extreme halophiles
- Thermoacidophiles
37. Methanogens
Methanogens are archaea capable of producing methane.
Example
Methanobacterium
They occur in anaerobic environments, including the digestive tract of ruminants.
Importance
Methanogens contribute to biogas production.
NEET Fact
Methanogens → Archaea → Methane production
38. Extreme Halophiles
These archaea can survive in environments containing extremely high concentrations of salt.
Example habitat
Highly saline environments.
39. Thermoacidophiles
These organisms can survive in environments with:
- High temperature
- High acidity
They are examples of extremophilic archaea.
40. Eubacteria
Eubacteria are commonly called true bacteria.
Characteristics
- Prokaryotic
- Unicellular
- Cell wall generally present
- Different shapes
- Autotrophic or heterotrophic
41. Common Bacterial Shapes
| Shape | Name |
|---|---|
| Spherical | Coccus |
| Rod-shaped | Bacillus |
| Comma-shaped | Vibrio |
| Spiral | Spirillum |
Easy memory
Coccus → Circle-like
Bacillus → Rod
Vibrio → Comma
Spirillum → Spiral
42. Cyanobacteria
Cyanobacteria are photosynthetic prokaryotes.
They were traditionally called blue-green algae, but they are actually bacteria.
Characteristics
- Prokaryotic
- Photosynthetic
- Chlorophyll-a present
- Unicellular, colonial or filamentous
- Some can fix atmospheric nitrogen
Examples
- Nostoc
- Anabaena
Heterocysts
Some cyanobacteria possess specialised cells called heterocysts, which are associated with nitrogen fixation.
NEET Fact
Cyanobacteria = photosynthetic prokaryotes
43. Mycoplasma
Mycoplasma are very small prokaryotic organisms.
Most important characteristic
Cell wall is absent.
Therefore, their shape can be variable.
NEET Fact
Mycoplasma = organisms without a cell wall
44. Viruses
Viruses are acellular infectious entities and are fundamentally different from cellular organisms.
Structure
A typical virus contains:
Nucleic acid + Protein coat
The protein coat is called the capsid.
Genetic material
A virus contains either:
- DNA
or - RNA
Characteristics
- Acellular
- No independent cellular metabolism
- Obligate intracellular parasites
- Replicate inside living host cells
- Outside the host, they can remain inert
Examples
- Bacteriophage
- Influenza virus
- Tobacco mosaic virus
- HIV
45. Virus — Important NEET Concept
Viruses show a unique relationship between living and non-living characteristics.
Outside host
They can behave like non-living particles.
Inside host
They replicate using the host’s cellular machinery.
Therefore, viruses are generally described as obligate intracellular parasites.
46. Viroids
Viroids are infectious agents smaller and simpler than viruses.
Characteristics
- Consist of small circular RNA
- Protein coat absent
- Mainly known to cause diseases in plants
Difference
| Virus | Viroid |
|---|---|
| DNA or RNA | Small circular RNA |
| Protein coat present | Protein coat absent |
| More complex | Simpler |
NEET Fact
Viroid = naked infectious RNA
47. Lichens
Lichens represent a symbiotic association between an alga and a fungus.
Algal partner
- Performs photosynthesis
- Provides food
Fungal partner
- Provides shelter
- Helps in water and mineral absorption
Importance
Lichens are sensitive to air pollution and can therefore act as indicators of air pollution.
NEET Fact
Lichen = Alga + Fungus
48. Prokaryotic vs Eukaryotic Cells
| Feature | Prokaryotic | Eukaryotic |
|---|---|---|
| True nucleus | Absent | Present |
| Nuclear membrane | Absent | Present |
| Membrane-bound organelles | Absent | Present |
| Ribosomes | 70S | 80S in cytoplasm |
| Example | Bacteria | Amoeba, plants, animals |
49. Autotrophic vs Heterotrophic Nutrition
| Autotrophic | Heterotrophic |
|---|---|
| Organism produces its own organic food | Obtains food from other sources |
| Photosynthesis or chemosynthesis may occur | Various modes of nutrition |
| Green plants | Animals |
| Cyanobacteria | Fungi |
Examples
Green plant → Autotrophic
Human → Heterotrophic
Mushroom → Heterotrophic
50. Plants vs Animals
| Feature | Plants | Animals |
|---|---|---|
| Cell wall | Present | Absent |
| Chlorophyll | Present in green plants | Absent |
| Nutrition | Mainly autotrophic | Heterotrophic |
| Locomotion | Generally absent | Generally present |
| Vacuoles | Usually large | Usually smaller/temporary |
51. Important Scientists and Contributions
| Scientist | Major contribution |
|---|---|
| Carolus Linnaeus | Binomial nomenclature |
| R.H. Whittaker | Five-kingdom classification |
| Carl Woese | Three-domain system |
52. NEET One-Liners
- Basic unit of classification → Species
- Science of identification, nomenclature and classification → Taxonomy
- Study of diversity and evolutionary relationships → Systematics
- Binomial nomenclature → Carolus Linnaeus
- Five-kingdom classification → R.H. Whittaker
- Three-domain system → Carl Woese
- Scientific name → Genus + Specific epithet
- Dried and preserved plant specimens → Herbarium
- Living plant collection → Botanical garden
- Wild animals under protected conditions → Zoological park
- Identification based on contrasting characters → Key
- Fungal cell wall → Chitin
- Typical bacterial cell wall → Peptidoglycan-containing
- Mycoplasma → Cell wall absent
- Lichen → Alga + fungus
- Viroid → Naked infectious RNA
- Virus → Acellular infectious entity
- Cyanobacteria → Photosynthetic prokaryotes
- Methanogens → Archaea
- Three domains → Archaea, Bacteria, Eukarya
53. Taxonomic Hierarchy — Quick Revision
Kingdom
↓
Phylum / Division
↓
Class
↓
Order
↓
Family
↓
Genus
↓
Species
Direction of increasing similarity
Kingdom → Species
Similarity increases
Diversity decreases
Number of organisms decreases
54. Most Important NEET Facts
1. Species
Basic unit of classification.
2. Taxonomy
Identification + Nomenclature + Classification
3. Systematics
Includes evolutionary relationships.
4. Binomial nomenclature
Scientific name consists of Genus + specific epithet.
5. Herbarium
Dried, pressed and preserved plant specimens.
6. Botanical garden
Living collection of plants.
7. Key
Based on contrasting characters.
8. Whittaker
Proposed five-kingdom classification in 1969.
9. Woese
Proposed three-domain system.
10. Mycoplasma
Cell wall absent.
11. Fungi
Cell wall mainly contains chitin.
12. Cyanobacteria
They are prokaryotes, not true algae.
13. Lichen
Algal partner + fungal partner.
14. Viroid
Small infectious RNA without a protein coat.
15. Virus
Obligate intracellular parasite.
16. Archaea
Include methanogens, extreme halophiles and thermoacidophiles.
55. Final NEET Rapid Revision Map
Diversity in Living World
→ Biodiversity
→ Classification
→ Taxonomy
→ Systematics
→ Binomial Nomenclature
→ Taxonomic Categories
→ Taxonomic Hierarchy
→ Taxonomical Aids
→ Herbarium
→ Botanical Garden
→ Museum
→ Zoological Park
→ Key
→ Flora
→ Manuals
→ Monographs
→ Five Kingdom Classification
→ Monera
→ Protista
→ Fungi
→ Plantae
→ Animalia
→ Three Domains
→ Archaea
→ Bacteria
→ Eukarya
→ Viruses
→ Viroids
→ Lichens
56. Ultra-Short NEET Revision
Species → Basic unit
Genus → Group of related species
Family → Group of related genera
Order → Group of related families
Class → Group of related orders
Phylum → Group of related classes
Kingdom → Group of related phyla
Herbarium → Dried plant specimens
Botanical garden → Living plants
Zoo → Living wild animals
Key → Contrasting characters
Monera → Prokaryotes
Protista → Mostly unicellular eukaryotes
Fungi → Chitinous cell wall
Plantae → Mainly autotrophic
Animalia → Heterotrophic, no cell wall
Archaea → Distinct prokaryotic domain
Cyanobacteria → Photosynthetic bacteria
Mycoplasma → No cell wall
Virus → Acellular infectious entity
Viroid → Naked RNA
Lichen → Alga + fungus
