K325 / 2027

Lesson 6 of 10 / Nutrition and transport in plants

Reading a limiting-factor graph

Why can extra light stop increasing the rate?

In this lesson: Explain how light, carbon dioxide and temperature can limit photosynthesis.

About 6 min

The key ideaA limiting factor restricts the rate. Increasing it raises the rate only until another factor becomes limiting.

Does more light or more CO2 increase the rate here?

Relative photosynthetic rate

Increasing light intensity

Brown: original CO2 availability. Green: higher CO2. Shading: selected light region. These are qualitative illustrative curves with no numerical scale, not measured data.

Explanation

At low light intensity, absorbed light energy may limit photosynthesis. Increasing light then increases the rate, provided enough carbon dioxide is available and temperature is suitable. A rising part of a rate-versus-light graph is consistent with light limiting the rate under those conditions.

At higher light intensity, a graph may level off. More light now produces little or no increase because another factor limits the rate. Carbon dioxide supply or temperature may be limiting. A plateau by itself does not identify which one; compare another controlled treatment to decide.

If increasing carbon dioxide at the same high light intensity raises the plateau, the original carbon dioxide availability was limiting there. At low light, extra carbon dioxide may have little effect because light still limits the process. Identify the region of the graph rather than assigning one limiting factor to the whole curve.

Temperature affects enzyme-controlled reactions. Starting from a low temperature, warming can increase the rate up to an optimum under the stated conditions. Above a suitable range, enzyme activity can be impaired and enzymes may denature, reducing the rate. The optimum is not one fixed value for every species and environment.

Step by step
  1. 1

    Locate the region

    State the factor on the horizontal axis and where the observation lies.

  2. 2

    Describe the pattern

    Use rising, levelling off or falling, supported by the comparison.

  3. 3

    Test the explanation

    Use a second controlled treatment to identify a specific alternative limiting factor.

Worked example

Two light-response curves

At high light intensity, increasing CO2 raises oxygen output. At low light, it makes little difference. Explain both results.

One way to explain it

At high light, CO2 was limiting, so more CO2 allows a higher rate. At low light, light remains limiting, so extra CO2 alone cannot substantially increase the rate.

Why this answer works
  • Use the effect of the changed CO2 treatment as evidence.
  • Give separate explanations for the two light regions.
  • Avoid saying that all factors are always equally limiting.
Is this true? "A flat light-response graph proves the plant has stopped photosynthesising."

A plateau shows a steady rate, which can still be high. It means additional light is no longer increasing that rate under those conditions.

Try a question

A light-response graph reaches a positive plateau. What can be concluded from that graph alone?
You can return to this lesson any time.