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Intermediate

Mitosis and the Cell Cycle

4.1.2.1 Chromosomes·4.1.2.2 Mitosis and the cell cycle

Aligned to the AQA 8461 specification

Level
Intermediate
Reading time
8 min
Published
16 June 2026
Updated
1 July 2026
On this page
  1. 1.Chromosomes Carry Your Genes
  2. 2.The Cell Cycle Has Three Overall Stages
  3. 3.Stage 1: Growth and DNA Replication
  4. 4.Stage 2: Mitosis — Separating the Chromosomes
  5. 5.Why Mitosis Matters
  6. 6.Worked Examples
  7. 7.Common Exam Mistakes

Key takeaways

  • A chromosome is a long coiled molecule of DNA carrying many genes; human body cells have 46 chromosomes arranged as 23 pairs, making them diploid.
  • The cell cycle has three overall stages: growth and DNA replication, mitosis (the nucleus divides), then cytokinesis (the cytoplasm and membranes divide).
  • DNA must replicate before mitosis so that each chromosome is copied, allowing both daughter cells to receive a full identical set.
  • Mitosis produces two genetically identical diploid daughter cells, each with the same 46 chromosomes as the parent cell.
  • Mitosis is used for growth, development, repair and replacement of cells, and asexual reproduction, which produces offspring that are clones of the parent.

Chromosomes Carry Your Genes

A chromosome is a long, coiled molecule of DNA found in the nucleus of a cell. Each chromosome carries a large number of genes — short sections of DNA that each code for a particular characteristic.

In human body cells the chromosomes are found in pairs. Humans have 23 pairs, giving 46 chromosomes in total. The two chromosomes in a pair carry the same genes in the same order, one copy inherited from each parent.

TermWhat it is
DNAThe molecule chromosomes are made of
ChromosomeA long molecule of DNA carrying many genes
GeneA short section of DNA coding for one characteristic
PairTwo matching chromosomes carrying the same genes

A body cell with chromosomes in pairs is called diploid. In humans the diploid number is 46 (23 pairs).

Because the chromosomes come in pairs, a cell holds two copies of the genetic information. This matters for cell division: before a cell splits, every chromosome must be copied so each new cell receives a full set.

The Cell Cycle Has Three Overall Stages

Cells do not divide instantly. They go through a repeating sequence called the cell cycle. For AQA you need the three overall stages — you do not need the named phases inside mitosis itself.

StageNameWhat happensWhy it matters
1Growth & DNA copyingCell grows; sub-cellular structures (ribosomes, mitochondria) increase; DNA replicates so each chromosome becomes two copiesBuilds the materials the two new cells will need
2MitosisOne set of chromosomes is pulled to each end of the cell; the nucleus dividesSeparates an identical set of genes to each side
3CytokinesisThe cytoplasm and cell membranes divideSplits one cell into two complete cells

The result is two genetically identical diploid daughter cells, each with a full set of 46 chromosomes — the same as the parent cell.

Stage 1 is the longest part of the cycle. Most of a cell's life is spent growing and copying its DNA, not dividing.

Stage 1: Growth and DNA Replication

Before a cell can divide it must first grow and prepare. Two things happen in this longest stage.

First, the cell increases the number of its sub-cellular structures — it makes more ribosomes and more mitochondria so that each daughter cell will have enough to function.

Second, the DNA replicates. Each chromosome is copied to form two identical copies, joined together. So a cell that started with 46 single chromosomes now holds 46 doubled chromosomes — 92 copies of DNA in total, still organised as 46 pairs of copies.

Replication must finish before mitosis begins. If the DNA were not copied first, each daughter cell would receive only half a set of chromosomes.

This careful copying is what allows the two daughter cells to end up genetically identical to each other and to the original cell.

Stage 2: Mitosis — Separating the Chromosomes

Mitosis is the stage where the nucleus divides. The copied chromosomes are separated so that each end of the cell receives one complete set.

One copy of each chromosome is pulled to each end of the cell. Because the chromosomes were copied in Stage 1, both ends receive a full, identical set of 46 chromosomes. The nucleus then divides into two.

Mitosis is followed by cytokinesis (Stage 3), when the cytoplasm and cell membranes pinch apart to form two separate cells. The outcome of the whole cycle is two genetically identical diploid daughter cells.

You do not need the named phases of mitosis for AQA 8461 — only that the chromosomes are pulled to each end and the nucleus divides.

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Why Mitosis Matters

Mitosis produces identical cells, and organisms rely on this in several ways. The same process serves four important purposes.

PurposeExample
GrowthA baby grows into an adult as the number of cells increases
DevelopmentCells multiply and organise to build tissues and organs in an embryo
Repair / replacementDamaged or worn-out cells, such as skin and blood cells, are replaced
Asexual reproductionSome organisms, such as plants reproducing by runners or strawberry plants, make identical offspring by mitosis

A skill the exam tests is recognising mitosis in context. Whenever cells of a multicellular organism are increasing in number to grow, heal a wound, or replace old cells, mitosis is responsible.

Because mitosis makes identical copies, asexual reproduction produces offspring that are clones of the parent — genetically identical, with no variation.

Worked Examples

Example 1 — Identify the cell-cycle stage.

A cell is described as having just finished copying its DNA, with each chromosome now present as two joined identical copies; the cell has not yet started to divide.

This is the end of Stage 1 (growth and DNA replication). Justification: DNA replication has happened (chromosomes are doubled), but the chromosomes have not yet been pulled apart and the nucleus has not divided — so mitosis (Stage 2) has not begun.

Example 2 — How many cells after divisions?

Each mitotic division turns one cell into two, so after divisions one starting cell becomes cells.

Find the number of cells after a single cell divides 4 times:

  • After 1 division:
  • After 2 divisions:
  • After 3 divisions:
  • After 4 divisions:

So one cell produces cells after 4 divisions. Check by doubling step by step: . ✓

Every one of those 16 cells is genetically identical to the original — mitosis does not create variation.

Common Exam Mistakes

1. Saying mitosis makes the cell divide before the DNA is copied

DNA replication happens in Stage 1, before mitosis. If you describe the chromosomes separating without first being copied, the daughter cells would not each get a full set.

2. Confusing mitosis with the whole cell cycle

Mitosis is only one of the three overall stages (it is the nuclear division). The full cycle also includes growth/DNA replication and the division of the cytoplasm and membranes.

3. Forgetting the daughter cells are genetically identical

Mitosis produces two genetically identical diploid daughter cells, each with the same number of chromosomes as the parent (46 in humans). Do not confuse this with meiosis, which makes non-identical sex cells.

4. Saying chromosomes are made of genes

It is the other way round: chromosomes are made of DNA, and a gene is a short section of that DNA. One chromosome carries many genes.

5. Not learning the three stages by name

You need all three overall stages: growth and DNA replication, mitosis (nucleus divides), then division of the cytoplasm and membranes. Listing only mitosis loses marks for an incomplete cycle.

Key terms

Chromosome
A long coiled molecule of DNA found in the nucleus, carrying many genes.
DNA
The molecule that chromosomes are made of.
Gene
A short section of DNA that codes for a particular characteristic.
Diploid
Describing a body cell that has its chromosomes in pairs; in humans the diploid number is 46.
Cell cycle
The repeating sequence cells go through, made up of growth and DNA replication, mitosis, and cytokinesis.
Mitosis
The stage of the cell cycle where the copied chromosomes are separated and the nucleus divides.
Cytokinesis
The stage where the cytoplasm and cell membranes divide to split one cell into two.
Clone
An offspring that is genetically identical to its parent, produced by asexual reproduction through mitosis.

Frequently asked questions

The three overall stages are growth and DNA replication (the cell grows and copies its DNA), mitosis (one set of chromosomes is pulled to each end and the nucleus divides), and cytokinesis (the cytoplasm and cell membranes divide to form two cells).

DNA replicates in the first stage, before mitosis, so that each chromosome becomes two identical copies. If the DNA were not copied first, each daughter cell would receive only half a set of chromosomes instead of a full set.

Yes. Mitosis produces two genetically identical diploid daughter cells, each with the same number of chromosomes (46 in humans) as the parent. This differs from meiosis, which makes non-identical sex cells.

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