IB Biology HL B4.2 — Ecological Niches Paper 1 & 2 Core idea ~13 min read

Methods of Nutrition

Every organism needs organic molecules to feed into respiration. There are only two basic ways to get them: build them yourself, or take them from something else. Everything on this page — plants, fungi, euglena, archaea living on hydrogen gas — is a variation on those two.

📘 What you need to know

Why nutrition exists at all

Organisms need energy in the form of ATP. The energy stored in ATP comes from organic molecules such as carbohydrates, and it is transferred during respiration.

So every organism has to get hold of organic molecules from somewhere. The way it does that is its method, or mode, of nutrition.

Watch your language here — examiners are strict about it. Energy is never produced or created, only transferred from one form to another. Photoautotrophs do not produce energy; they produce their own food by transferring light energy into chemical energy.
The modes of nutrition Two basic strategies, plus the organisms that do both mode of nutrition AUTOTROPH MIXOTROPH HETEROTROPH makes its own food uses both methods gets food from other organisms photoautotroph chemoautotroph obligate facultative holozoic saprotrophiclight energy chemical energy must have both one, topped up digests inside digests outsideThe split is about where the organic molecules come from. Everything below that first split is a detail of how it is done.
Keep this shape in your head. Almost every nutrition question is asking you to place an organism somewhere on this diagram.

Autotrophs and photosynthesis

An autotroph synthesises its own organic molecules from simple inorganic substances in its environment.

Photosynthetic organisms are photoautotrophs. They use light energy to convert carbon dioxide from the air into organic molecules such as carbohydrates, using photosynthetic pigments such as chlorophyll to absorb the light.

Photosynthesis carbon dioxide + water → glucose + oxygen  •  requires light and chlorophyll

Because they make their own organic molecules without relying on anything else, photosynthetic organisms are called producers. Two things follow, and both matter:

Photosynthetic organisms include plants (terrestrial and aquatic), algae (single-celled algae and multicellular seaweeds) and photosynthetic bacteria such as cyanobacteria.

Heterotrophs: holozoic nutrition

A heterotroph gains organic molecules from the tissues of other organisms. All animals are heterotrophs.

Organisms using holozoic nutrition do it in four steps:

🧩 The four stages of holozoic nutrition

  1. Ingestion — eating.
  2. Digestion — breaking larger molecules into smaller ones.
  3. Absorption — transporting those molecules from the digestive tract into the cells.
  4. Assimilation — using the molecules to build cells and tissues.
The one thing to remember: holozoic nutrition involves internal digestion. That is what separates it from the saprotrophs below.

There are heterotrophs that break this rule. House flies, for example, secrete enzymes onto their food and then absorb the products. They are heterotrophs, but they are not holozoic, because the digestion happens outside the body.

Saprotrophs

Saprotrophs are heterotrophs that feed on dead organisms and waste material by secreting enzymes onto their food and digesting it externally, then absorbing the products. Examples are fungi and bacteria, which is why we also call them decomposers.

Inside or outside? That is the whole difference Both are heterotrophs; only the location of digestion changesHOLOZOIC SAPROTROPHIC ingest → digest → absorb → assimilate the food is taken in first, then broken down secrete enzymes → digest → absorb the food is broken down before it is taken inRed dots are digestive enzymes. Note which side of the body they sit on. Detritivores such as earthworms eat dead matter but digest it internally.
An earthworm and a fungus both live on dead material, but only the fungus is a saprotroph. The worm is a detritivore using holozoic nutrition.

Why saprotrophs matter to everything else

Decomposers and detritivores are not the same thing. Both feed on dead material, but decomposers such as fungi are saprotrophs using external digestion, while detritivores such as earthworms digest their food internally, using holozoic nutrition. Examiners test this exact distinction.

Mixotrophs

Some organisms use more than one method of nutrition, such as autotrophy and heterotrophy together. These are mixotrophs.

The standard example is euglena, a single-celled eukaryote found in fresh water:

Other mixotrophs worth knowing:

Nutrition in archaea

The archaea are a diverse group of single-celled organisms making up one of the three domains, and they vary a lot in how they feed.

GroupWhere the ATP energy comes fromWhere the carbon compounds come from
Phototrophic archaeaLight. Some use a pigment called bacteriorhodopsin to absorb light and pump hydrogen ions across a membrane; the resulting ion gradient drives ATP synthase.From other organisms — so these are photoheterotrophs, not autotrophs.
Chemoautotrophic archaeaEnergy released from chemicals, transferred to carbon compounds by chemosynthesis. Sources include hydrogen gas, ammonia, methane and hydrogen sulfide.They make their own, from inorganic sources.
Chemoheterotrophic archaeaEnergy from chemicals, used to drive ATP production directly.From other organisms.
Heterotrophic archaeaFrom the carbon compounds they take in.From other organisms, e.g. breaking down and absorbing compounds in dead plant material.
Note the split. “Photo-” and “chemo-” tell you the energy source. “-autotroph” and “-heterotroph” tell you the carbon source. They are two separate questions, which is why photoheterotrophs can exist.
You are not expected to give examples of archaea at species level. Knowing the four groups and what makes them different is enough.

Worked examples

WORKED EXAMPLE

Distinguish between holozoic and saprotrophic nutrition. [3]

Start with what they share Both are forms of heterotrophic nutrition. Now the difference that matters Holozoic: food is ingested first and digested inside the body. Saprotrophic: enzymes are secreted onto the food and digestion happens outside the body. Saprotrophs then absorb the products of that external digestion the word “internal” or “external” has to appear. It is the deciding point.
WORKED EXAMPLE

Explain why saprotrophs are essential to a forest ecosystem. [3]

Say what they do to dead matter They secrete a wide range of enzymes that hydrolyse the molecules in dead organisms and waste. What is released? Mineral ions such as ammonium and phosphate are released into the soil. Who benefits? Not all the products are absorbed by the saprotroph, so plants can take up the rest without this step, nutrients stay locked in dead matter forever.
WORKED EXAMPLE

A single-celled organism has chloroplasts and also engulfs bacteria. State its mode of nutrition and justify your answer. [2]

Identify both methods being used Chloroplasts mean autotrophy; engulfing bacteria means heterotrophy. Name the term for using both It is a mixotroph, because it uses more than one method of nutrition euglena is the example to name if the question invites one.

💡 Exam tip

⚠ Common mix-up

Up next: Nutrition in Hominidae — how you can read an animal’s diet off its teeth, and why that trick is less reliable than it looks.

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