What makes something alive?

It sounds like a simple question, but IGCSE Biology demands a precise answer. A candle flame moves, a crystal grows, and a river responds to gravity, yet none of them is alive. The difference lies in seven specific characteristics that every living organism must display. Miss one in an exam answer, and you lose a mark. Get all seven, and you have a watertight definition.

The seven characteristics of life: MRS GREN

The mnemonic MRS GREN gives you the first letter of each characteristic. Learn this sequence and you will never leave one out under pressure.

LetterCharacteristicPrecise definition (as expected by the examiner)
MMovementAn action by an organism or part of an organism causing a change of position or place
RRespirationThe chemical reactions in cells that break down nutrient molecules and release energy for metabolism
SSensitivityThe ability to detect and respond to changes in the internal or external environment
GGrowthA permanent increase in size and dry mass
RReproductionThe processes that make more of the same kind of organism
EExcretionThe removal of the waste products of metabolism and substances in excess of requirements
NNutritionThe taking in of materials for energy, growth and development
Exam tip: Examiners penalise vague wording. "Growth" is not just "getting bigger" - it is a permanent increase in size and dry mass. A balloon inflating is not growth. A plant adding cellulose to its cell walls is. Use the precise definitions above in every answer.

Common confusion: excretion vs egestion

Excretion removes waste products of metabolism - substances made inside the body's own chemical reactions. Carbon dioxide from respiration, urea from the breakdown of amino acids, and excess water are all excretory products. Egestion is the removal of undigested food that was never absorbed into cells in the first place. Faeces are egested, not excreted. The exam tests this distinction regularly, and a surprising number of candidates still confuse the two.

Why we classify organisms

With an estimated 8.7 million species on Earth, biologists need an orderly system to identify, name, and group living things. Classification organises this vast diversity into manageable categories based on shared features. Organisms that share more features are placed in the same group, which tells us something about their common ancestry.

[Extended/Supplement] At the Extended level, you need to explain that modern classification reflects evolutionary relationships. Evidence comes from three sources: studies of body structure (morphology and anatomy), analysis of DNA base sequences, and comparison of protein molecules. Two species that share 98% of their DNA are almost certainly more closely related than two that share only 60%. Molecular evidence has reshaped classification in recent decades, sometimes overturning groupings that were based on appearance alone.

The binomial system

Every species has a two-part scientific name under the binomial system devised by Carl Linnaeus. The first part is the genus (plural: genera), and the second part is the species. Both parts are always written in italics (or underlined if handwritten), and the genus starts with a capital letter while the species is lowercase.

  • Homo sapiens - the genus Homo and the species sapiens
  • Panthera leo - the lion, sharing the genus Panthera with Panthera tigris (the tiger)
  • Zea mays - maize, a cereal plant in the genus Zea
Exam tip: Two organisms in the same genus share a recent common ancestor and have many structural features in common. The binomial system is internationally agreed, so a scientist in Tokyo and a scientist in Nairobi can discuss Panthera leo without ambiguity, regardless of local common names. This is the key advantage the examiner expects you to state.

Defining a species

A species is a group of organisms that can reproduce to produce fertile offspring. A horse and a donkey can mate and produce a mule, but mules are infertile, so horses and donkeys remain separate species. This definition is straightforward for most animals but becomes awkward for organisms that reproduce asexually (such as bacteria) or that hybridise freely (some plants). For the IGCSE exam, the "fertile offspring" definition is what you need.

The five kingdoms

All living organisms are placed into one of five kingdoms. The table below lists the key features the examiner expects you to know for each one.

KingdomCell typeCell wallNutritionBody organisationExamples
AnimalsEukaryoticNo cell wallHeterotrophic (ingest food)Multicellular with specialised cellsInsects, fish, birds, mammals
PlantsEukaryoticCellulose cell wallAutotrophic (photosynthesis)Multicellular with specialised cellsFerns, grasses, oak trees
FungiEukaryoticChitin cell wallSaprophytic (absorb nutrients from dead/decaying matter)Multicellular; body made of hyphaeMushrooms, moulds, yeast
BacteriaProkaryoticPeptidoglycan cell wallVariable (some autotrophic, some heterotrophic)Unicellular; no membrane-bound nucleusLactobacillus, E. coli
ProtoctistsEukaryoticVariableVariable (some photosynthesise, some ingest food)Mostly unicellularAmoeba, Chlorella, Plasmodium
Exam tip: Protoctists are the "leftover" kingdom. If an organism is eukaryotic and does not fit neatly into animals, plants or fungi, it is almost certainly a protoctist. Chlorella photosynthesises like a plant but is unicellular, so it goes into Protoctists. Amoeba ingests food like an animal but is unicellular, so it is also a protoctist.

Vertebrate groups

Animals with a backbone (vertebral column) are vertebrates, and the IGCSE syllabus requires you to distinguish five classes. The distinguishing features examiners test are listed below.

ClassSkin coveringBreathing organReproductionThermoregulationExample
FishWet scalesGillsExternal fertilisation; lay eggs in waterEctothermic (body temperature depends on the environment)Salmon, cod
AmphibiansMoist, permeable skin (no scales)Lungs (adults); also absorb oxygen through skinExternal fertilisation; lay eggs in water; larvae have gillsEctothermicFrog, newt
ReptilesDry scalesLungsInternal fertilisation; lay eggs with leathery shells on landEctothermicLizard, crocodile
BirdsFeathersLungsInternal fertilisation; lay eggs with hard shellsEndothermic (maintain constant body temperature internally)Eagle, penguin
MammalsHair or furLungsInternal fertilisation; most give birth to live young; feed young on milk from mammary glandsEndothermicHuman, whale, bat

Arthropod groups

Arthropods are invertebrates with jointed legs and an exoskeleton. The IGCSE exam expects you to distinguish four arthropod classes based on the number of legs and body divisions.

  • Insects: three pairs of legs (6), three body sections (head, thorax, abdomen), one or two pairs of wings, one pair of antennae. Examples: bee, mosquito, beetle.
  • Arachnids: four pairs of legs (8), two body sections (cephalothorax and abdomen), no wings, no antennae. Examples: spider, scorpion, tick.
  • Crustaceans: more than four pairs of legs (often 5 pairs of walking legs), hard exoskeleton often calcified, two pairs of antennae. Examples: crab, lobster, woodlouse.
  • Myriapods: many pairs of legs (one or two pairs per body segment), elongated body with many segments, one pair of antennae. Examples: centipede, millipede.
Exam tip: The fastest way to classify an arthropod in a diagram question is to count the legs. Six legs = insect. Eight legs = arachnid. More than eight with a hard shell and two pairs of antennae = crustacean. Lots of segments with many legs = myriapod. Examiners often present unlabelled diagrams and ask you to identify the group and justify your answer.

Dichotomous keys: a worked example

A dichotomous key is a series of paired statements that guide you through identifying an organism by choosing one statement at each step. "Dichotomous" means splitting into two. You follow one branch at each fork until you reach a name.

Suppose you are given five organisms to identify: a spider, a crab, a butterfly, a centipede, and a woodlouse. A key might look like this:

  1. (a) Has six legs ............ go to 2
    (b) Has more than six legs ............ go to 3
  2. (a) Has wings ............ Butterfly
    (b) Has no wings ............ (not applicable in this set)
  3. (a) Has exactly eight legs ............ Spider
    (b) Has more than eight legs ............ go to 4
  4. (a) Has two pairs of antennae and a calcified exoskeleton ............ go to 5
    (b) Has one pair of antennae and many body segments ............ Centipede
  5. (a) Large body; ten or more walking legs ............ Crab
    (b) Small, oval body; seven pairs of walking legs ............ Woodlouse

When the exam asks you to construct a key, follow these principles: each step must offer exactly two mutually exclusive options, use observable (not hidden) features, and avoid subjective terms like "big" or "colourful." Measurable or countable features work best.

Features used to classify plants

The IGCSE syllabus also requires you to distinguish plant groups. The two main divisions tested are flowering plants (angiosperms) and ferns.

  • Flowering plants (angiosperms): produce seeds enclosed in a fruit; have flowers for reproduction; further divided into monocotyledons (one seed leaf, parallel leaf veins, fibrous roots) and dicotyledons (two seed leaves, branching leaf veins, taproot).
  • Ferns: do not produce seeds or flowers; reproduce using spores produced in sporangia on the underside of fronds; have roots, stems and leaves.

[Extended/Supplement] At the Extended level, you should also be aware that classification is an evolving discipline. DNA sequencing has revealed that some organisms previously grouped by physical similarity are actually distantly related, while others that look quite different share recent common ancestors. This is why modern classification increasingly relies on molecular evidence alongside traditional morphological study.

Common exam mistakes

  1. Defining growth as "getting bigger": the mark scheme requires "a permanent increase in size and dry mass." Temporary swelling (such as a cell absorbing water) is not growth. The word "permanent" is essential.
  2. Confusing excretion with egestion: excretion removes metabolic waste (CO2, urea). Egestion removes undigested food (faeces). The exam almost always includes a question that tests whether you know the difference.
  3. Saying respiration is "breathing": respiration is a chemical reaction inside cells. Breathing (ventilation) is the physical movement of air in and out of the lungs. They are related but not the same process.
  4. Forgetting to italicise (or underline) binomial names: Homo sapiens must be in italics in print or underlined if handwritten. The genus takes a capital letter; the species does not. Writing "homo Sapiens" or "Homo Sapiens" will cost you a mark.
  5. Placing organisms in the wrong kingdom: yeast is a fungus, not a bacterium. Chlorella is a protoctist, not a plant. Amoeba is a protoctist, not an animal. These are tested repeatedly.
  6. Using subjective features in dichotomous keys: "is it pretty?" or "is it large?" are not valid key statements. Use measurable, observable features like number of legs, presence of wings, or type of body covering.
  7. Confusing ectothermic and endothermic: ectothermic organisms depend on external heat sources to regulate body temperature (reptiles, fish, amphibians). Endothermic organisms generate their own body heat internally (birds, mammals). "Cold-blooded" and "warm-blooded" are imprecise terms the exam avoids.

Self-check questions

  1. List all seven characteristics of living organisms using the MRS GREN mnemonic. For each one, write a single-sentence definition that would satisfy the mark scheme.
  2. Explain the difference between excretion and egestion, giving one example of a substance involved in each process.
  3. A scientist discovers a multicellular eukaryotic organism that has chitin cell walls and absorbs nutrients from decaying wood. Which kingdom does it belong to, and why?
  4. An organism has eight legs, two body sections, and no antennae. Identify the arthropod class and name one other organism from the same class.
  5. Write a four-step dichotomous key that could be used to distinguish a frog, a lizard, a robin, and a salmon using only the features in the vertebrate classification table above.
  6. [Extended] Explain how DNA evidence can change the way organisms are classified, giving one reason why molecular evidence might contradict a classification based on physical appearance.

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TLDR

Every living organism shares seven measurable characteristics and fits into one of five kingdoms based on observable and molecular features. This guide covers the MRS GREN mnemonic, the five-kingdom classification system, binomial nomenclature, dichotomous keys, vertebrate and arthropod groups, and the Extended content on evolutionary relationships, with tables, worked examples, common exam pitfalls and self-check questions.