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  1. KS3
  2. Biology
  3. Reproduction
  4. Gametes and fertilisation

Reproduction · Process

Gametes and fertilisation

Two cells fuse and become one. Each brought half a set of instructions; neither brought anything like half the material.

Start here

An egg cell has several thousand times the volume of a sperm cell.

An egg is around 0.1 mm across — just visible without a microscope, the largest cell in the human body. A sperm’s head is about 0.005 mm. They contribute exactly the same number of chromosomes: twenty-three each.

Equal instructions, wildly unequal size. Where has all the extra gone?

Two specialised cells · six features

Every difference has a reason

0 of 6 opened

These are the specialised cells from Specialised cells, doing the clearest job in the body. Tap a row to see why each cell has what it has.

FeatureSperm cellEgg cell

Relative diameter, to scale

  • Egg cell

    0.1 mm across

  • Sperm cell head

    0.005 mm across

Those bars are diameters. Because volume goes as the cube of the diameter, a twentyfold difference in width is roughly an eight-thousandfold difference in volume — and the egg’s cytoplasm is where nearly all of that sits.

The process, in order

Five steps, and only one of them is fertilisation.

  • Release · Ovary oviduct

    One mature egg cell leaves an ovary and enters the oviduct, where cilia and muscle begin moving it along. It remains able to be fertilised for roughly a day.

  • Transfer and travel · Vagina uterus oviduct

    Semen is transferred into the vagina. Sperm swim through the cervix and uterus into the oviduct — a journey of about 15 cm for a cell 0.005 mm long. Hundreds of millions set out; a few hundred arrive.

  • Fertilisation · Oviduct — and nowhere else

    One sperm passes through the egg’s outer layer and its nucleus fuses with the egg’s nucleus. 23 plus 23 makes 46. The outer layer then changes so no other sperm can enter. This step, and only this step, is fertilisation.

  • Dividing · Travelling down the oviduct

    The single fertilised cell divides into two, then four, then eight, over about five days, while still travelling. It is a ball of cells before it has arrived anywhere.

  • Implantation · Uterus lining

    The ball of cells embeds itself in the thickened lining of the uterus, where it can be supplied. This is a separate event from fertilisation, several days later and in a different organ — and it is where pregnancy begins.

Key fact

Fertilisation is the moment the nucleus of a sperm fuses with the nucleus of an egg, forming a single cell with a full set of chromosomes. It happens in the oviduct, and everything before and after it is a different step with a different name.

Gametes and fertilisation: the five-step journey mapped on one tractOne framed drawing above a key of five steps. The drawing is a female reproductive tract seen from the front: a uterus in the centre with a thick lining drawn inside it, an oviduct curving out and up from each of its upper corners to a fringed funnel above an ovary, and below the uterus a cervix and then the vagina. Five numbered markers, each a circle ringed in orange, are placed along the tract in the order the process happens. Marker 01 sits at the left funnel, where one egg leaves the ovary. Marker 02 sits low in the vagina. From 02 a dashed ink line, carrying arrowheads that point away from it, runs up through the cervix, across the uterus and into the left oviduct: that is the sperm’s route in. Marker 03 sits in the outer part of the left oviduct and is labelled day 0, fertilisation. A solid orange line runs from 01 along the oviduct, through 03, and on: between 03 and marker 04 it passes one cell, then two, then four, drawn small along the route. Marker 04 sits further along the same oviduct, nearer the uterus, and is labelled days 1 to 5, dividing. The orange line then enters the uterus and ends at marker 05, low in the uterus lining, labelled about day 6, implantation, where a small ball of cells is drawn embedded in the lining. The legend gives the solid orange line as the egg and then the embryo, and the dashed ink line as the sperm’s route in. The key reads: 01 release, ovary to oviduct, one egg leaves and can be fertilised for about a day. 02 transfer and travel, vagina to uterus to oviduct, sperm swim up through the cervix and the uterus. 03 fertilisation, the oviduct and nowhere else, one sperm nucleus fuses with the egg nucleus, 23 and 23 makes 46. 04 dividing, travelling down the oviduct, two cells then four then eight over about five days. 05 implantation, the uterus lining, the ball of cells embeds itself where it can be supplied.01one egg leavesthe ovary02semen transferred;the sperm swim up03in the oviductday 0 · fertilisation04days 1–5 · dividing,and still travelling05about day 6 ·implantationovaryovaryoviductuteruscervixvaginaThe egg, then the embryoThe sperm’s route inFIVE STEPS, IN ORDER01ReleaseOvary to oviductOne egg leaves, and can be fertilised for about a day02Transfer and travelVagina to uterus to oviductSperm swim up through the cervix and the uterus03FertilisationThe oviduct — and nowhere elseOne sperm nucleus fuses with the egg nucleus. 23 and 23 makes 4604DividingTravelling down the oviductTwo cells, then four, then eight, over about five days05ImplantationThe uterus liningThe ball of cells embeds where it can be supplied03 and 05 are different events, in different organs, about six days apart.Fertilisation is one nucleus fusing with another — not a sperm arriving. Many arrive; one fuses.
The whole process on one tract, numbered in the order it happens. The solid orange line is one journey — the egg, and then the embryo it becomes — running from the ovary at 01 to the uterus lining at 05. The dashed line is the sperm’s route in, and the two meet at 03 in the oviduct. The cells drawn between 03 and 04 are the same embryo dividing while it is still travelling: by the time it reaches 05 it is a ball of cells and it is in a different organ, five or six days later. Find 03, then find 05: they are marked with different days, they sit in different organs, and the orange route runs the whole way between them. Fertilisation and implantation are two events, not one.

Think again

“Fertilisation is when the sperm reaches the egg.”

Arriving is not fertilising. Many sperm reach the egg and touch its surface; fertilisation is the single event in which one sperm’s nucleus fuses with the egg’s nucleus, and it happens once. The distinction is not fussiness — the moment of fusion is what triggers the egg to change its outer layer so that no second sperm can enter, and it is what produces the full set of forty-six chromosomes. Use *reaches* and you have described a crowd; use *fuses* and you have described the event. The same care applies to the words either side of it: implantation is a different step, days later and in a different organ, and pregnancy begins there rather than at fertilisation.

“Identical twins happen when two eggs are fertilised.”

That is the recipe for non-identical twins, and it is worth having both straight because the two arise at completely different moments. Non-identical twins: two eggs released, two sperm, two separate fertilisations — two ordinary siblings who happen to share a pregnancy, and they can be different sexes. Identical twins: one egg, one sperm, one fertilisation — and then, within the first fortnight, the ball of cells splits in two and each half continues as a whole embryo. Same chromosomes in both, always the same sex. Notice what that means: identical twins are not caused by anything about the gametes at all. The cause happens after fertilisation is over.

Mastery ladder

Not started yet.

Rungs 3 and 4 you mark yourself.

Rung 1 · Define it precisely

Which of these is fertilisation?

Rung 2 · The one that catches people

A sperm and an egg each carry 23 chromosomes, but an egg has thousands of times more material. What is the extra material for?

Rung 3 · Explain the two designs

Explain why a sperm cell is small with a tail and many mitochondria, while an egg cell is large and immobile with a food store. Say what each is specialised for, and name the one feature they share.

Rung 4 · Take it somewhere new

A student says identical twins must come from two eggs, because there are two babies. Say whether they are right, explain what actually causes each kind of twin, and give one observation that would tell the two kinds apart.

Key note

A gamete is a sex cell with half a set of chromosomes — 23 in humans. Sperm are small, mobile and numerous; egg cells are large, immobile and few, and carry the food store and cytoplasm. Fertilisation is the fusion of the two nuclei, in the oviduct, producing a single cell with 46 chromosomes. It divides as it travels and implants in the uterus lining several days later.

Going further

Every mitochondrion in your body came from your mother. The egg supplies all the cytoplasm and everything in it; the sperm’s few mitochondria power its journey and are destroyed after fusion. Mitochondria carry a small loop of their own DNA, so that DNA passes down an unbroken line of mothers — and because it is not shuffled with anything each generation, it changes only by slow mutation. That makes it a clock. Comparing mitochondrial DNA across living humans traces every one of us back to a common maternal ancestor in Africa, and it is how the deep structure of human migration was worked out before anyone could sequence a whole genome. A cell’s leftover packing material turned out to be the archive.

Before this lesson

  • This follows on from Human reproductive systems.

Connects to

At GCSE this becomes

  • Meiosis, sexual and asexual reproduction compared, and inherited variation.

Where to next

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