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Mineral ions: magnesium and nitrate

Structure and functions in living organisms · Nutrition in flowering plants · note 4 of 6

Mineral ions: magnesium and nitrateSpec 2.22

In short

Plants need mineral ions, absorbed from the soil by the roots, for healthy growth. Magnesium ions are needed to make chlorophyll, so a shortage causes yellow leaves and slower photosynthesis. Nitrate ions are needed to make amino acids, which are joined to make proteins for growth, so a shortage causes stunted growth.

Plants need more than carbon dioxide, water and light. They also need mineral ions for healthy growth. The roots absorb these ions from the soil. You need to know two of them.

Two mineral ions that plants need
Mineral ionWhy the plant needs itEffect of a shortage
Magnesium ionsNeeded to make chlorophyllLeaves turn yellow, because there is less chlorophyll
Nitrate ionsNeeded to make amino acids, which are joined to make proteins for growthStunted (poor) growth

Without enough chlorophyll, a plant absorbs less light, so it photosynthesises more slowly and makes less glucose. Without enough amino acids, the plant cannot make the proteins it needs for new cells, so it grows slowly.

Three potted plants: a healthy plant, a small stunted plant lacking nitrate, and a plant with yellow leaves (chlorosis) lacking magnesium. (opens full size in a new tab)
Lack of nitrate causes stunted growth; lack of magnesium causes yellow leaves.
Common mistake:

Link each ion to its job: magnesium goes with chlorophyll (yellow leaves), nitrate goes with amino acids and proteins (stunted growth). Do not say that plants use nitrate to make chlorophyll or glucose.

Written and checked against the Edexcel IGCSE Science Double Award (4SD0) specification · Updated October 2026

Frequently asked questions

What are the limiting factors of photosynthesis?

The limiting factors of photosynthesis are light intensity, carbon dioxide concentration and temperature. A limiting factor is whichever is in shortest supply, so it stops the rate from going any faster. On a graph the rate rises while that factor limits it, then the line goes flat when a different factor becomes limiting.

How does light intensity affect the rate of photosynthesis?

As light intensity increases, the rate of photosynthesis increases, then levels off. Light provides the energy for the reaction, so at low light intensity the amount of light limits the rate. At high light intensity the rate stops rising because another factor, such as carbon dioxide concentration or temperature, has become the limiting factor.

How does temperature affect the rate of photosynthesis?

The rate of photosynthesis increases with temperature up to an optimum, then falls sharply. Photosynthesis is controlled by enzymes, so a higher temperature gives more collisions between enzymes and substrates. Above the optimum the enzymes are denatured because their active sites change shape, so the rate falls. Enzymes are not killed, because they are not alive.

All 5 questions on Nutrition in flowering plants