IB Biology HL Topic 4 — Genetics, Inheritance & Change Paper 1 & 2 Practical skill ~7 min read

Mitosis (Skills)

Knowing the four phases is one thing. Being handed a photomicrograph of a hundred crowded cells and picking out which is in anaphase is another. The good news: each phase has a visual signature, and once you know what to look for it takes seconds.

📘 What you need to know

Read the chromosomes first

Almost every identification comes down to two questions, asked in this order:

  1. Can you see individual chromosomes at all? If not, the cell is in interphase — the chromatin is spread out and stains as a dark, even nucleus.
  2. How many groups are there, and where? One group in the middle of the cell, one group lined up in a row, two groups moving apart, or two groups sitting at the poles.

Answer those two and the phase falls out almost automatically.

What each stage looks like on a slide Count the groups of chromosomes and note where they are Interphase Prophase Metaphase Anaphase Telophase dark nucleus, no chromosomes chromosomes visible, one group lined up across the middle two groups moving apart, V shapes two groups at the poles Look at the chromosomes: how many groups, and where? Prophase has one group; telophase has two, one at each pole.
Real slides are messier than this, but the signatures hold. Work through the five in order and eliminate as you go.

The identification table

What you can seePhase
No individual chromosomes; nucleus dark and evenly stainedInterphase
Chromosomes visible in one group; nuclear envelope breaking downProphase
Chromosomes in a single line across the middle of the cellMetaphase
Two groups moving apart from the middle, often V-shapedAnaphase
Two groups at opposite poles, starting to uncoilTelophase
A furrow pinching in, or a plate forming across the middleCytokinesis

The one that catches people out

Prophase and telophase can look surprisingly similar on a slide. In both, the chromosomes are condensed and the nuclear envelope is somewhere between present and absent. The reliable difference is how many groups of chromosomes there are:

Telling prophase and telophase apart The trick is counting the groups of chromosomes Prophase Telophase one group in the centre two groups, one at each pole Also check the envelope: breaking down or re-forming Prophase chromosomes are still condensing; telophase ones uncoil.
If you can only see one group, it cannot be telophase. That single check settles most of these questions.

Worked examples

WORKED EXAMPLE

Identifying from a description

In a micrograph of a root tip, one cell shows two separate clusters of dark, V-shaped structures partway between the middle and the ends of the cell. Identify the phase and justify your answer.

Step 1: Are chromosomes visible? Yes, so the cell is not in interphase. Step 2: How many groups, and where? Two groups, partway to the poles — so they are moving apart, not lined up and not yet arrived. Step 3: Use the shape The V shape shows they are being dragged centromere first. Anaphase Two groups still in transit rules out both metaphase and telophase.
WORKED EXAMPLE

Why so many cells look the same

In a photomicrograph of a root tip, most cells show a dark nucleus with no visible chromosomes. Explain this observation.

Step 1: Name the stage No visible chromosomes means the cells are in interphase, where the DNA is spread out as chromatin. Step 2: Explain the proportion Interphase is by far the longest stage of the cell cycle. Step 3: Link time to numbers A slide is a snapshot, so the proportion of cells in a stage reflects how long that stage lasts. Most cells are in interphase because it takes up most of the cell cycle This idea underpins the mitotic index calculation later in the chapter.
WORKED EXAMPLE

Two candidates

A student cannot decide whether a cell is in prophase or telophase. State two features they should check and what each would show.

Feature 1: number of groups One group in the centre means prophase; two groups at opposite poles means telophase. Feature 2: the nuclear envelope Breaking down means prophase; re-forming around each group means telophase. Number of chromosome groups, and the state of the nuclear envelope Condensing versus uncoiling chromosomes is a third clue, but harder to see.

💡 Exam tip

⚠ Common mix-up

Up next: Meiosis — the other kind of nuclear division. Two rounds instead of one, four nuclei instead of two, and, unlike mitosis, deliberately designed to make every product different.

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