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  3. Respiration
  4. Fermentation and what we use it for

Respiration · Process

Fermentation and what we use it for

Bread, yoghurt, cheese, soy sauce, vinegar, chocolate, and every alcoholic drink there has ever been. All of them are the waste products of something respiring without oxygen, and we built a civilisation on them before we knew that.

Start here

A loaf of bread is full of holes. Something put them there.

Cut a slice and count them: hundreds of bubbles, each one a pocket of gas trapped in dough that set around it in the oven. The dough went in flat and came out twice the size. Nothing was pumped into it.

What made the holes?

At the bench · one vessel, four dials

Set the conditions, see what you have made

nothing changed yet

The same four dials that a brewer, a baker and a yoghurt maker all set differently. Some settings give you nothing at all, which is just as informative.

Organism

Oxygen

Temperature

Sugar

glucose ethanol + carbon dioxide

Rate 100% of maximum

  • Carbon dioxide

    100 units

  • Ethanol

    100 units

What you have made

Beer, wine, or a rising loaf

A brewer lets the gas out through an airlock and keeps the liquid; a baker keeps the gas in the dough and lets the ethanol boil off in the oven. Same reaction, opposite product wanted.

Two fermentations, two products

Which organism decides what you get.

  • A single-celled fungus

    Yeast

    • glucose ethanol + carbon dioxide

    Two products, one of them a gas. Which one you want decides what you build: a baker wants the gas and lets the ethanol evaporate, a brewer wants the ethanol and lets the gas escape through an airlock.

    Bread, beer, wine, cider, and ethanol for fuel.

  • Bacteria

    Lactic acid bacteria

    • glucose lactic acid

    One product, no gas. The acid curdles milk protein, which is what thickens yoghurt, and it drops the pH low enough that spoilage organisms cannot grow.

    Yoghurt, cheese, sauerkraut, kimchi, sourdough’s sour taste, and salami.

Key fact

Fermentation is anaerobic respiration in micro-organisms. In yeast, glucose gives ethanol + carbon dioxide; in bacteria such as those in yoghurt, glucose gives lactic acid. What we call the food is the organism's waste.

Think again

“Fermenting is just food going off in a controlled way.”

It is closer to the opposite. Milk left on a windowsill spoils because whatever lands in it grows; milk turned into yoghurt is deliberately given one chosen organism and the conditions that organism likes, and the lactic acid it produces drops the pH far enough that the spoilage organisms cannot grow. That is why yoghurt keeps longer than the milk it was made from, why sauerkraut survived European winters, and why every traditional cuisine has fermented foods in it. Alcohol does the same job by different means. The pattern is worth holding onto: a fermented food is one where we picked the micro-organism first, and the waste product it makes is exactly what keeps everything else out.

“Yeast is a powder — a raising agent, like baking powder.”

Baking powder is a chemical that releases carbon dioxide when it gets wet and warm, and it works in a bowl of anything. Yeast is a living organism: a single-celled fungus, of the kind you met in Unicellular organisms, dried into a state where it survives on a shelf and revives in warm water. Everything a baker does follows from that. You give it sugar because it needs feeding; you use warm water because it is a living thing with enzymes and an optimum temperature; you do not use boiling water, because that denatures the enzymes and kills it, exactly as in Enzymes in digestion; and you wait, because it is respiring at its own pace and cannot be hurried. A packet of dried yeast contains billions of dormant cells, and a dead one raises nothing.

Mastery ladder

Not started yet.

Rungs 3 and 4 you mark yourself.

Rung 1 · The yeast equation

What does yeast produce when it respires anaerobically?

Rung 2 · The one that catches people

Dough contains yeast, which produces ethanol. Why is there almost no alcohol in the finished loaf?

Rung 3 · Explain the yoghurt

Explain how warm milk becomes yoghurt, and why the yoghurt keeps for longer in the fridge than the milk it was made from.

Rung 4 · Take it somewhere new

Design an investigation to find the temperature at which yeast ferments fastest. Say what you would measure, what you would keep the same, and what shape of result you would expect — and explain what happens above the optimum.

Key note

Fermentation is anaerobic respiration carried out by micro-organisms. Yeast, a single-celled fungus, converts glucose to ethanol and carbon dioxide — the gas raises bread and the ethanol makes beer and wine. Bacteria convert sugars to lactic acid, which is how yoghurt, cheese and sauerkraut are made and why they keep. Both need sugar, warmth and no oxygen, and both stop if the organism is killed.

Going further

The same vessel, scaled up, is one of the workhorses of modern industry. Almost all the insulin used by people with diabetes is now made by micro-organisms — bacteria or yeast — carrying an inserted human gene, grown in fermenters of several thousand litres; before that it was extracted from the pancreases of pigs and cattle, which was expensive, in short supply, and not quite human insulin. Antibiotics including penicillin are grown the same way, from a fungus. Quorn is a fungus grown in a fermenter and harvested as food. Ethanol for fuel is made by yeast on an industrial scale from sugar cane, and in Brazil a large share of cars run on it. What every one of these has in common is a tank, a chosen organism, a food supply, and careful control of temperature, pH and oxygen — the four dials on the bench above, with a bigger vessel.

Before this lesson

Connects to

At GCSE this becomes

  • Industrial fermenters and their control systems, biotechnology, and genetically modified organisms making human proteins.

Where to next

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