IB Biology HL Topic 4 — Genetics, Inheritance & Change Paper 1 & 2 Core idea ~11 min read

Plant Reproduction

Plants face a problem animals do not: their gametes cannot move. A pollen grain has no tail and no way of swimming anywhere. So a flowering plant solves the problem by growing a tube through its own tissue — and then fertilises twice at the same time.

📚 What you need to know

Making the gametes

Both sexes use the same two-step pattern: meiosis first to halve the chromosome number, then mitosis to produce more copies of the haploid product.

In the anther are pollen sacs. Each pollen sac contains a diploid mother cell that undergoes meiosis to form four haploid pollen grains, and mitosis then produces further haploid male gametes.

In the ovule, a single diploid cell undergoes meiosis to produce four haploid egg cells, but only one of them survives. That survivor divides by mitosis to produce the female gametes.

Why meiosis matters here. Because the gametes are made by meiosis and then fuse, all pollination is a form of sexual reproduction — even self-pollination, where both gametes come from the same plant.

The structure of a flower

Flowers develop during the reproductive stage of the plant life cycle and contain everything needed for sexual reproduction by pollination. Three structures do the heavy lifting: the anther, where the male gamete is found; the stigma, which receives the pollen; and the ovary, where the female gametes sit.

The parts of a flower Male parts on the outside, female parts down the middle. stigma anther filament ovary ovule petal stamen = filament + anther carpel = stigma, style, ovary sepal receptacleStamen is male, carpel is female. Every other part supports or protects those two.
Learn the two collective names. “Stamen” and “carpel” each cover several structures, and questions often ask for one of them by name.
StructureFunction
SepalProtects the developing flower while it is still in the bud
PetalColourful, to attract pollinators
AntherPart of the stamen that produces the male gametes
PollenContains the male nuclei for fertilisation
FilamentThe stalk of the stamen that holds the anther up
StigmaThe top of the carpel, where pollen lands
StyleThe part of the carpel that supports the stigma
OvaryContains the ovules
OvuleThe chamber within the ovary where female gametes develop

Pollination

Pollination is the transfer of pollen from an anther to a stigma. Many flowering plants are hermaphroditic, meaning one flower contains both male and female parts, which opens up two possibilities.

The pollen tube and double fertilisation

Landing on the stigma is not the end of the journey. Once pollination has occurred, a pollen tube grows out of the pollen grain and down through the style to the ovary. The tip of the tube produces enzymes that digest the tissue of the stigma and style, clearing a path.

Two male nuclei travel down that tube to the ovule. This is where plants do something animals never do. One male nucleus fuses with the ovule nucleus to form the diploid zygote. The other fuses with two polar nuclei to produce a triploid nucleus that becomes the embryo’s food store, the endosperm.

Double fertilisation male nucleus 1 + egg nucleus = zygote (2n)   |   male nucleus 2 + two polar nuclei = endosperm (3n)
Growing a tube to the egg Two male nuclei make the trip, and both are used. pollen grain stigma style pollen tube ovuletwo male nuclei enter the tube tip enzymes digest a path down nucleus 1 + egg = zygote (2n) nucleus 2 + 2 polar nuclei = endosperm (3n)The ovule becomes the seed, the ovary becomes the fruit. Two fusions, one journey down the tube.
The second fusion is why the food store in a seed is triploid. It is a genuine fertilisation, not just a spare nucleus being used up.
Fertilisation in a plant is the same event as in an animal: haploid male and female nuclei fuse to form a diploid zygote. What differs is the delivery method and the fact that it happens twice.

Worked examples

WORKED EXAMPLE

Explain why self-pollination is still classed as sexual reproduction. [2]

Point 1 — how the gametes are made The male and female gametes are both produced by meiosis, so they are haploid and genetically varied. Point 2 — what happens next The gametes fuse at fertilisation to form a diploid nucleus, which is the defining feature of sexual reproduction, regardless of whether the two gametes came from the same plant. 2 marks Self-pollination produces less variation than cross-pollination, but it is not asexual.
WORKED EXAMPLE

Describe what happens from pollen landing on the stigma to the formation of a seed. [4]

Point 1 — the tube A pollen tube grows from the pollen grain down through the style towards the ovary, with enzymes at the tip digesting the tissue ahead of it. Point 2 — the journey Two male nuclei travel down the pollen tube to the ovule. Point 3 — double fertilisation One male nucleus fuses with the ovule nucleus to form a diploid zygote; the other fuses with two polar nuclei to form the triploid food store. Point 4 — afterwards The ovule develops into the seed and the ovary develops into the fruit. 4 marks Ovule to seed, ovary to fruit — that pair is worth memorising as one line.

💡 Exam tip

⚠ Common mix-up

Up next: Pollination — how insect-pollinated and wind-pollinated flowers are built differently, and the tricks plants use to avoid pollinating themselves.

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