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Plant tissues, organs and systems: exam questions

6 questions, 19 marks. Write your answers on paper, then open each mark scheme.

1

Which plant tissue is found at the growing tips of shoots and roots?

  1. Xylem
  2. Phloem
  3. Meristem
  4. Epidermal tissue
[1 mark]
Show mark scheme

Answer: C C (1)

2

Explain how a root hair cell is adapted for taking in mineral ions from the soil.

[3 marks]
Show mark scheme
  • long root hair gives a large surface area (1)
  • mineral ions are taken in by active transport (1)
  • which needs energy from respiration / many mitochondria (1)
3

Compare the transport of substances in xylem and phloem.

[3 marks]
Show mark scheme
  • xylem transports water and mineral ions (1)
  • phloem transports dissolved sugars (1)
  • xylem: from roots to stems and leaves; phloem: from the leaves to the rest of the plant (1)
  • allow xylem has lignin / hollow tubes; phloem has pores in end walls
4

Describe the role of stomata and guard cells in a leaf.

[3 marks]
Show mark scheme
  • stomata are pores that allow gases to move in and out / gas exchange (1)
  • guard cells control the opening and closing of the stomata (1)
  • closing stomata reduces water loss (1)
5

A student used a potometer to measure the distance an air bubble moved in 5 minutes. Three repeats gave: 24 mm, 27 mm and 21 mm. Calculate the mean rate of transpiration in mm per minute.

[3 marks]
Show mark scheme
  • mean distance = (24 + 27 + 21) ÷ 3 = 24 mm (1)
  • 24 ÷ 5 (1)
  • 4.8 mm/min (1)
  • allow 3 marks for the correct answer with no working
6

Explain how temperature, humidity, air movement and light intensity affect the rate of transpiration in a plant.

[6 marks]
Show mark scheme
LevelMarksWhat the answer does
35–6A clear, correct explanation of the effects of all four factors, with reasons linked to evaporation, diffusion or stomata.
23–4Correct effects given for at least three factors, with some reasons.
11–2Some correct effects given, with few or no reasons.

Indicative content

  • Higher temperature increases the rate: water evaporates and diffuses out faster
  • Higher humidity decreases the rate: smaller concentration gradient of water vapour between the leaf and the air
  • More air movement increases the rate: removes water vapour from around the stomata so the concentration gradient stays steep
  • Higher light intensity increases the rate: stomata open wider so more water vapour escapes
  • The opposite changes reduce the rate