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4.2.3.1Plant tissues

AQA GCSE Combined Science (8464), Higher tier · Biology › Organisation › Plant tissues, organs and systems

Practise Plant tissues. 14 exam-style questions plus unlimited generated ones on this subtopic, at up to four difficulty levels, with full mark schemes and a progress tracker. Free, no account needed.

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The tissues that make up a leaf (a plant organ) and how the structure of each tissue relates to its function: epidermis, palisade and spongy mesophyll, xylem, phloem, guard cells and stomata, plus meristem tissue. Questions ask you to label a leaf cross-section and explain adaptations for photosynthesis and gas exchange.

Grade by grade

What you need to be able to do, from the first marks up to the top grade.

  1. 3
    Name the tissues in a leafUpper and lower epidermis, palisade mesophyll, spongy mesophyll, xylem and phloem, with guard cells around the stomata.
  2. 4
    Label a leaf cross-sectionFrom top to bottom: waxy cuticle, upper epidermis, palisade mesophyll, spongy mesophyll with air spaces and veins, lower epidermis with stomata.
  3. 4
    State where meristem tissue is foundAt the growing tips of shoots and roots, where cells divide to make new cells.
  4. 5
    State the function of each leaf tissueEpidermis covers the leaf, palisade does most photosynthesis, spongy mesophyll lets gases diffuse, xylem carries water and phloem carries sugars.
  5. 6
    Explain how the mesophyll layers are adaptedPalisade cells are packed with chloroplasts near the top of the leaf; spongy mesophyll has air spaces for gases to diffuse through.
  6. 6
    Describe what guard cells and stomata doGuard cells open and close the stomata to control gas exchange and water loss.
  7. 7
    Explain how leaf structure suits photosynthesisLink the thin, broad shape, transparent epidermis, chloroplast position, air spaces, stomata and veins to supplying light, carbon dioxide and water.

Notes

The leaf is an organ

  • A leaf is a plant organ made of several tissues that work together, mainly for photosynthesis and gas exchange.
  • Upper epidermis: a single layer of transparent cells, so light passes through. It is covered by a waxy cuticle that reduces water loss.
  • Palisade mesophyll: tall, tightly packed cells near the top of the leaf, with many chloroplasts. Most photosynthesis happens here because these cells receive the most light.
  • Spongy mesophyll: rounded, loosely packed cells with many air spaces, so carbon dioxide and oxygen diffuse quickly through the leaf.
  • Lower epidermis: contains most of the stomata (tiny pores). Each stoma is surrounded by two guard cells that open and close it. Carbon dioxide diffuses in, and oxygen and water vapour diffuse out, through the stomata.

Transport and growth tissues

  • Xylem: hollow tubes strengthened by lignin, which carry water and mineral ions from the roots to the leaves.
  • Phloem: tubes of elongated cells, which carry dissolved sugars from the leaves to the rest of the plant.
  • Xylem and phloem run together in the veins of the leaf.
  • Meristem tissue is found at the growing tips of shoots and roots. Its cells divide by mitosis, and the new cells can differentiate into many types of plant cell.

Whole-leaf adaptations grade 7+

  • Broad and flat: a large surface area to absorb light.
  • Thin: a short diffusion distance for carbon dioxide to reach the mesophyll cells.
  • Network of veins: xylem brings water for photosynthesis and phloem carries the sugars away.

Cheatsheet

  • Leaf = an organ; epidermis, palisade, spongy mesophyll, xylem and phloem = tissues
  • Waxy cuticle: reduces water loss
  • Palisade mesophyll: many chloroplasts; most photosynthesis
  • Spongy mesophyll: air spaces for gas diffusion
  • Stomata (mostly in the lower epidermis): CO2 in; O2 and water vapour out
  • Guard cells: open and close the stomata
  • Xylem: water and mineral ions, from the roots upwards
  • Phloem: dissolved sugars, from the leaves to the rest of the plant
  • Meristem: at the tips of shoots and roots; cells divide and differentiate

How to answer each type of question

Name or label a leaf tissue

1 mark each4
  1. Work from top to bottom: cuticle, upper epidermis, palisade, spongy mesophyll, lower epidermis.
  2. Stomata and guard cells are mostly on the lower surface.
  3. The veins (xylem and phloem) are in the middle of the leaf.

Example. Name the tissue in a leaf that:
(a) contains the most chloroplasts
(b) transports water into the leaf
(c) contains air spaces for gas exchange.

Show the model answer
(a) palisade mesophyll (1)
(b) xylem (1)
(c) spongy mesophyll (1)

Explain how a tissue is adapted to its function

2 to 3 marks6
  1. Give a feature of the tissue.
  2. Link it to the job with 'so': more light absorbed, faster diffusion, less water lost.

Example. Explain how the palisade mesophyll is adapted for photosynthesis.

Show the model answer
Its cells contain many chloroplasts (1), which contain chlorophyll to absorb light (1). The cells are near the top of the leaf, so they receive the most light (1).

Explain how the leaf is adapted for gas exchange

3 marks7
  1. Stomata let gases in and out (opened by guard cells).
  2. Air spaces in the spongy mesophyll let gases diffuse quickly.
  3. A thin leaf gives a short diffusion distance.

Example. Explain how the structure of a leaf allows carbon dioxide to reach the palisade cells.

Show the model answer
Carbon dioxide diffuses into the leaf through the stomata (1). The spongy mesophyll has air spaces, so carbon dioxide diffuses quickly through the leaf (1). The leaf is thin, so the diffusion distance is short (1).

Describe meristem tissue

2 marks4
  1. Say where it is: the growing tips of shoots and roots.
  2. Say what it does: its cells divide to make new cells, which differentiate.

Example. Where in a plant is meristem tissue found, and what is its function?

Show the model answer
At the growing tips of shoots and roots (1). Its cells divide (by mitosis) to produce new cells for growth, which can differentiate into different types of cell (1).

Shortcuts and memory tricks

  • Leaf layers, top to bottom: 'Can Unicorns Paint Silly Little Goats?' = Cuticle, Upper epidermis, Palisade, Spongy mesophyll, Lower epidermis, Guard cells.
  • Palisade = Packed with chloroplasts. Spongy = Spaces for gases.
  • Phloem: 'ph' sounds like 'f' for food (sugars). Xylem carries water.

Where marks are lost

  • Calling the leaf a tissue. The leaf is an organ; palisade mesophyll, xylem and so on are tissues.
  • Saying most photosynthesis happens in the epidermis or spongy mesophyll. Most happens in the palisade mesophyll.
  • Calling the guard cells the pores. The stoma is the pore; the guard cells surround it and open and close it.
  • Mixing up xylem (water and mineral ions) and phloem (dissolved sugars).
  • Saying the waxy cuticle stops all water loss. It reduces water loss.

Exam technique

  • For 'explain how it is adapted' questions, give feature + function pairs.
  • Name the gas and the direction: carbon dioxide diffuses in; oxygen and water vapour diffuse out.
  • When labelling a diagram, make sure each label line ends exactly on the correct layer.

Quick recall

Cover the answers and test yourself. The app has these as flashcards that come back just before you'd forget them.

Light enters a leaf through its upper surface.
Put these tissues in the order that light passes through them.
  • lower epidermis
  • palisade mesophyll
  • spongy mesophyll
  • upper epidermis
upper epidermis → palisade mesophyll → spongy mesophyll → lower epidermis
Name the gas that diffuses into the leaf through the stomata for use in photosynthesis.
carbon dioxide
A leaf is an organ.
Give the level of organisation of the palisade mesophyll.
tissue

Sample questions

Written for this site in the style of AQA exam questions. They are not taken from real past papers.

Question 1Easy5 marks
{fig} shows a cross-section through part of a leaf.
[object Object]
(a) Name tissues B and C.[2]
(b) Give the function of cell D.[1]
(c) Layer A is covered by a waxy cuticle.
Give the function of the waxy cuticle.[1]
(d) Which layer contains the most chloroplasts?
Tick (✓) one box.[1]
  • A
  • B
  • C
Show the answer and mark scheme
(a) Answer: B palisade mesophyll; C spongy mesophyll
  • B – palisade mesophyll
  • C – spongy mesophyll
(b)
  • to open and close the stoma / to control gas exchange and water loss
(c)
  • to reduce water loss (by evaporation)
(d) Answer: B
Question 2Medium6 marks
A leaf contains several different plant tissues.
(a) Explain how the palisade mesophyll is adapted for photosynthesis.[2]
(b) Explain how the spongy mesophyll is adapted for gas exchange.[2]
(c) The upper epidermis is transparent.
Suggest why this is an advantage.[1]
(d) Meristem tissue is found at the growing tips of shoots and roots.
Give the function of meristem tissue.[1]
Show the answer and mark scheme
(a)
  • the cells contain many chloroplasts (to absorb light)
  • the layer is near the upper surface of the leaf, so receives the most light
(b)
  • it has (many) air spaces
  • so gases such as carbon dioxide can diffuse (quickly) to the photosynthesising cells
(c)
  • light can pass through to the palisade cells (for photosynthesis)
(d)
  • its cells divide (by mitosis) to make new cells that can differentiate / for growth
Question 3Hard7 marks
The leaf is a plant organ. It contains several tissues that work together.
(a) Explain how the tissues of a leaf are adapted for photosynthesis and gas exchange.[6]
(b) Name the gas that diffuses into the leaf through the stomata for use in photosynthesis.[1]
Show the answer and mark scheme
(a)
  • waxy cuticle and upper epidermis are transparent, letting light through; the cuticle reduces water loss
  • palisade mesophyll cells contain many chloroplasts to absorb light
  • palisade cells are close to the upper surface and tightly packed, so they receive the most light
  • spongy mesophyll has air spaces, so gases diffuse quickly between the stomata and the cells
  • stomata in the lower epidermis let carbon dioxide diffuse in and oxygen / water vapour diffuse out
  • guard cells open and close the stomata to control gas exchange and water loss
  • xylem brings water (for photosynthesis); phloem carries dissolved sugars away
  • the leaf is thin, giving a short diffusion distance, and has a large surface area

Marked with levels of response: the full level descriptors are in the app.

(b) Answer: carbon dioxide
  • carbon dioxide

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