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  1. KS3
  2. Biology
  3. Photosynthesis
  4. Why almost all life depends on it

Photosynthesis · System

Why almost all life depends on it

One reaction, running in leaves and in water you cannot see into, is the doorway through which almost all the energy in the living world arrives — and the source of every breath you have ever taken.

Start here

Every meal you have ever eaten was once a leaf.

A steak is a cow, and a cow is grass. That one is easy. The awkward cases are the ones that look nothing like a plant — a fish finger, a slice of cheese, a mushroom — and they are where the rule is either true or not.

Which of these did not begin with photosynthesis?

At the bench · follow it back

Trace a meal to a leaf

step 1 of 4

Pick something off the plate and step backwards through the chain that supplied it. Count the steps — and notice that the number changes while the destination never does.

On the plate

Steak

follow it back

Three things it does for everything else

Food, air, and the balance between them.

  • Job one · The way in for energy

    Energy enters almost every food chain on Earth at one point: a photosynthetic organism capturing sunlight. Everything above that is spending what a producer captured. Without it: nothing above the producers has any source of energy at all, and the chains empty from the bottom up.

  • Job two · The oxygen in the air

    The atmosphere is about a fifth oxygen and all of it is biological in origin — released over billions of years as a waste product of splitting water. Without it: no new oxygen is added, while every respiring organism keeps consuming what is there.

  • Job three · Taking carbon back out

    Respiration, decay and burning all put carbon dioxide into the air. Photosynthesis is the only large-scale biological process that removes it, locking carbon into wood, roots and ocean sediment. Without it: carbon dioxide only ever rises, because the living world's one route out of the atmosphere has been closed.

Key fact

Photosynthetic organisms — plants on land, algae and plankton in the sea — are the producers. They build the organic molecules that almost every other living thing eats, they released the oxygen in the atmosphere, and they take carbon dioxide back out of it.

Think again

“Plants do the photosynthesising — trees are the lungs of the planet.”

Roughly half of all photosynthesis on Earth happens in the sea, carried out by algae and phytoplankton, most of them single cells too small to see without a microscope. A drifting organism a hundredth of a millimetre across, in numbers no one can count, matches every forest and grassland on land put together. Rainforests are irreplaceable for a long list of reasons, and being the planet's only oxygen supply is not one of them — a mature forest also consumes much of what it produces, since every one of its cells respires day and night. Keep the vocabulary honest and this stays clear: the group that matters is photosynthetic organisms, which includes plants, algae and some bacteria. Restricting the idea to green things with roots leaves out half the planet's production and most of its producers.

“Plants make oxygen for us to breathe.”

Not for us, and not for anything. Oxygen is a waste product: the plant is building glucose, and oxygen is what is left over from splitting water to do it. There was no oxygen worth mentioning in the atmosphere for the first two billion years of Earth's history, and the organisms that eventually filled it with the stuff were bacteria releasing a gas that was, at the time, poisonous to almost everything alive. Breathing animals appeared afterwards, in an atmosphere that was already there — the sequence runs the other way round from the way the sentence implies. Nothing in biology is done for another organism's benefit, and a plant that gave away useful material on purpose would be out-competed by one that did not. Plants also respire continuously, which is the subject of Stomata and gas exchange in plants and worth having straight before this claim is repeated.

Mastery ladder

Not started yet.

Rungs 3 and 4 you mark yourself.

Rung 1 · Producers

What does it mean to call a plant a producer?

Rung 2 · The one that catches people

A mushroom is not green and cannot photosynthesise. Does it depend on photosynthesis?

Rung 3 · Follow the energy

Explain how the energy in a beef burger got there, starting from the Sun. Use the words producer, photosynthesis, glucose and respiration.

Rung 4 · Take it somewhere new

Coal is often described as "ancient sunlight". Explain what that means, where the carbon in a lump of coal came from, and what burning it does to the atmosphere.

Key note

Photosynthetic organisms are producers: they build organic molecules from carbon dioxide and water using light, and everything that cannot do this depends on them, directly or through a chain. They also released the oxygen in the atmosphere and continue to take carbon dioxide out of it. Roughly half of the world's photosynthesis happens in the sea.

Going further

The word almost in this lesson's title is doing real work. Two and a half kilometres down, where no light has ever reached, hot water loaded with dissolved chemicals pours out of cracks in the sea floor and whole communities live around it — tube worms two metres long, crabs, clams. At the base of those food chains are bacteria that build sugars using energy released from chemical reactions instead of energy from light, a process called chemosynthesis. They were found in 1977, and they mattered immediately: until then, sunlight was assumed to be the only way energy could enter a living system. It is a useful thing to know when people speculate about life on a moon with a frozen ocean and no daylight at all.

Before this lesson

Connects to

At GCSE this becomes

  • Trophic levels and biomass transfer, the carbon cycle, and the evidence behind human effects on atmospheric carbon dioxide.

Where to next

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