1.3 Features of organisms

Syllabus
0610–2026–2027
Topic
1.3
Level

Learning objectives

Distinguish the animal and plant kingdoms

Animals and plants are placed in different kingdoms by a combination of cellular and nutritional features, not by one familiar example.

Feature Animals Plants
organisation multicellular multicellular
cell wall absent cellulose cell wall present
chloroplasts absent present in photosynthetic tissues
nutrition consume organic material photosynthesise using chlorophyll
movement usually able to move the whole organism or body parts usually fixed in one place; parts can move or grow

A multicellular organism with cellulose cell walls and chloroplasts belongs to the plant kingdom. A multicellular organism whose cells lack walls and chloroplasts and which feeds on other organisms belongs to the animal kingdom.

Movement alone is not a safe kingdom test, and not every plant cell contains chloroplasts. Use the combined pattern of cell walls, chloroplasts, nutrition and organisation.

Recognise vertebrate and arthropod groups

Vertebrates have a backbone. Arthropods have a segmented body, jointed appendages and an exoskeleton. Features within each group separate the named classes.

Vertebrate group Main identifying features
mammals hair or fur; females have mammary glands and feed young with milk; lungs
birds feathers; beak; hard-shelled eggs
reptiles dry, scaly skin; leathery-shelled eggs laid on land
amphibians moist skin without scales; eggs laid in water; larvae and adults differ
fish scales and fins; gills; aquatic
Arthropod group Main identifying features
myriapods many body segments; many pairs of legs
insects head, thorax and abdomen; three pairs of legs; one pair of antennae
arachnids cephalothorax and abdomen; four pairs of legs; no antennae
crustaceans usually more than four pairs of legs; two pairs of antennae

Wings do not define birds because some insects and mammals also have wings. Four limbs do not distinguish one vertebrate class. Prefer feathers, fur, skin, gas-exchange structures, leg pairs and body regions.

Classify animals from a feature set

To classify an animal, match all available evidence to the defining feature set for a kingdom and then for a vertebrate or arthropod group.

Step Question
1 Is it an animal: multicellular, no cellulose cell walls, feeds on organic material?
2 Does it have a backbone, or the exoskeleton and jointed appendages of an arthropod?
3 Which named group matches its covering, appendages, body regions, reproduction and gas exchange?
4 Check that no observed feature contradicts the classification.

An animal with an exoskeleton, three body regions and three pairs of jointed legs is an insect. An animal with a backbone, moist unscaled skin and eggs laid in water is an amphibian.

When evidence is mixed, discuss both support and contradiction. A single shared feature, such as the same number of teeth or the ability to swim, is weaker than a whole matching feature set.

Do not classify from habitat or one striking feature. Whales swim but are mammals; some reptiles have four limbs, but so do many amphibians and mammals.

Distinguish the five kingdoms

The five kingdoms are animal, plant, fungus, prokaryote and protoctist. They are distinguished by cell type, organisation, cell walls, chloroplasts and nutrition.

Kingdom Main features
animal multicellular; no cell walls or chloroplasts; feeds by consuming organic material
plant multicellular; cellulose cell walls; chloroplasts; photosynthetic
fungus usually a mycelium of hyphae; chitin cell walls; no chloroplasts; extracellular digestion then absorption
prokaryote usually unicellular; no nucleus or membrane-bound organelles; circular DNA; cell wall not made of cellulose
protoctist mostly unicellular eukaryotes with a nucleus; varied features; some have chloroplasts and photosynthesise

First ask whether a nucleus is present. No nucleus indicates a prokaryote. With a nucleus, use multicellularity, cell-wall material, chloroplasts and feeding method to separate plants, animals, fungi and protoctists.

A unicellular organism with a nucleus and chloroplasts is a photosynthetic protoctist, not a prokaryote. A multicellular organism with non-cellulose walls that secretes digestive enzymes and absorbs products is a fungus.

Chloroplasts do not automatically mean plant: some protoctists contain them. A cell wall does not automatically mean plant: fungi and prokaryotes also have walls of different composition.

Recognise fern, monocot and dicot features

Within the plant kingdom, ferns are separated from flowering plants; flowering plants are then divided into monocotyledons and dicotyledons.

Group Main features
ferns fronds; reproduce by spores; no flowers or seeds
flowering plants produce flowers, seeds and usually fruits
monocotyledons one cotyledon; narrow leaves with parallel veins; fibrous roots; flower parts in multiples of three
dicotyledons two cotyledons; broad leaves with branching veins; tap root; flower parts in multiples of four or five

For a visible specimen, leaf width and venation are often the fastest evidence: narrow parallel-veined leaves support monocot; broad branching-veined leaves support dicot. Fronds and spores support fern.

One leaf feature can be damaged or atypical. Use more than one feature when available, and do not call every non-flowering specimen a fern without evidence of fronds or spores.

Classify organisms into kingdoms and plant groups

Classify an unknown organism by moving from broad cellular evidence to narrower plant-group features. Each conclusion should name the observed evidence that supports it.

Stage Evidence to use
kingdom nucleus, multicellularity, cell wall and its material, chloroplasts, nutrition
plant versus other eukaryote cellulose wall, chloroplasts and photosynthesis
fern versus flowering plant spores and fronds versus flowers and seeds
monocot versus dicot cotyledons, leaf venation, roots and flower-part number

A plant with narrow leaves and parallel veins is classified as a flowering plant and, more specifically, a monocotyledon. A plant with fronds and spores but no flowers is a fern.

An answer should pair identity with evidence: ‘monocotyledon because its leaves are narrow and have parallel veins’, not just the group name.

Do not jump from one cellular feature directly to a plant subgroup. First establish the kingdom, then use only the syllabus-listed fern and flowering-plant features.

Identify the two defining virus components

A virus consists of genetic material surrounded by a protein coat.

Component Role in the structure
genetic material carries the viral genetic information; it may be DNA or RNA
protein coat surrounds and protects the genetic material

In a simple virus diagram, an outer shell is the protein coat and the strand or material inside is the genetic material. Both are present in all viruses within the syllabus scope.

A virus is not classified as a prokaryote. A bacterial cell has cytoplasm, a cell membrane and other cellular structures; the syllabus virus model is limited to genetic material and a protein coat.

Do not label the protein coat as a cell wall or the genetic material as a nucleus. The objective requires exactly the protein coat and genetic material; extra organism-specific structures are not universal virus features.