Every card in Cells and organisation, Year 10: plant tissues and transport
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- Palisade mesophyll cells are packed with chloroplasts and lie near the upper surface of a leaf. Why does this arrangement suit their job?
They absorb as much light as possible for photosynthesis
HintAsk which side of a leaf faces the Sun.
WhyThe palisade layer is the main site of photosynthesis. Its tall cells stand upright in a tight row just under the upper skin of the leaf, where the light is brightest, and each holds many chloroplasts.
- Spongy mesophyll tissue has many air spaces between its cells. What are the air spaces for?
To let gases diffuse quickly to and from the cells
HintPhotosynthesis needs one gas brought in and produces another that has to get out.
WhyCarbon dioxide enters the leaf and has to reach the photosynthesising cells; oxygen has to leave. Gases diffuse much faster through air than through cells, so the spaces give a fast route and a large surface for exchange.
- The thin layer of cells that covers the upper and lower surfaces of a leaf
The epidermis
HintYour own skin has an outer layer with the same name.
WhyEpidermal tissue covers the whole plant. On a leaf it protects the tissues inside, and the upper layer is transparent, so light passes through to the cells beneath. The lower layer has small pores for gas exchange.
- Each stoma (pore) in a leaf is surrounded by a pair of cells that open and close it. What are these cells called? (two words)
guard cells
HintThe first word is what a sentry does at a gate.
WhyGuard cells change shape to open or close the pore between them. In this way they control how much gas is exchanged and how much water is lost. Most stomata are on the underside of the leaf.
- Going down through a leaf from the top, the layers are: upper epidermis, ____ mesophyll, ____ mesophyll, lower epidermis.
palisade; spongy
HintThe upper one is named after a fence of upright stakes; the lower one after something full of holes.
WhyThe tightly packed layer comes first because it needs the most light. Beneath it is the loosely packed layer with air spaces, next to the pores in the lower surface. Veins of xylem and phloem run through the middle of the leaf.
- The loss of water vapour from the leaves of a plant
Transpiration
HintThe word begins like "transport" and ends like "perspiration".
WhyWater evaporates from the cells inside a leaf and diffuses out through the stomata. This loss pulls more water up through the xylem from the roots, in a continuous flow called the transpiration stream.
- Why does a plant lose water faster on a windy day?
Moving air carries water vapour away from the leaf, keeping the concentration gradient steep
HintAsk what builds up just outside the pores when nothing stirs.
WhyIn still air, the water vapour that has left the leaf stays near the stomata, so the difference in concentration between inside and outside is small. Wind removes it, so diffusion out of the leaf stays fast.
- Why does the rate of transpiration rise when the temperature rises?
Water evaporates faster and its particles diffuse faster
HintThink why washing dries sooner on a hot day.
WhyWarmer water molecules have more energy, so more of them escape from the wet cell surfaces inside the leaf, and they move out through the stomata more quickly.
- Why does the rate of transpiration rise in bright light?
The stomata open wider, so more water vapour escapes
HintIn daylight the leaf needs to let a gas in for photosynthesis.
WhyIn the light, guard cells open the stomata to let in carbon dioxide for photosynthesis. Open stomata also let water vapour out. In the dark the stomata close and transpiration slows.
- A leafy shoot is set up so that the water it takes in is drawn along a narrow tube. An air bubble in the tube moves 30 mm in 5 minutes. What is the rate of water uptake in mm per minute? (number only)
6
HintShare the distance moved over the time taken.
WhyRate = distance moved by the bubble ÷ time = 30 ÷ 5. The bubble moves because the shoot takes up water to replace what its leaves lose, so the rate of uptake is used as a measure of the rate of transpiration.
- The movement of dissolved sugars through the phloem of a plant
Translocation
HintThe word means "moving from one place to another".
WhySugars made in the leaves by photosynthesis are needed by every part of the plant. Phloem tissue carries them, dissolved in cell sap, to growing regions and to storage organs.
- Xylem tissue is made of hollow tubes strengthened by a substance called ____.
lignin
HintIt is the tough material that makes wood woody.
WhyLignin is laid down in the walls of xylem cells. It makes the tubes strong enough to stay open while water is pulled up through them, and it helps to support the plant.
- Root hair cells absorb water by ____ and take in mineral ions by ____.
osmosis; active transport
HintOne process is the diffusion of water; the other needs energy because it works against a concentration gradient.
WhySoil water is a more dilute solution than the contents of the root hair cell, so water moves in across the membrane. Mineral ions are scarcer in the soil than in the cell, so they have to be moved in using energy from respiration.
- In which direction does xylem tissue carry water and mineral ions?
Upwards, from the roots to the stem and leaves
HintThink where a plant takes water in and where it loses it.
WhyWater enters at the root hairs and is lost from the leaves, so the flow in xylem is one way. Phloem is different: it carries sugars from the leaves to wherever they are needed, which can be up or down.
- Phloem carries sugars made in the leaves to every other part of the plant. Some of the sugar is used as soon as it arrives. What is done with the rest so that it can be used later?
It is stored
HintThink what a potato or a carrot is for.
WhyGrowing regions use sugar at once, for respiration and for building new cells. Storage organs such as potato tubers and carrot roots keep it for later, often after turning it into starch.
1★ GCSE-BIOL-CEL-0073
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