IB ESS SL Topic 4 — Aquatic Food Production Systems Paper 1 & 2 Core idea ~9 min read

Food Webs in Aquatic Systems

Almost every fish you have ever eaten owes its existence to organisms too small to see. Aquatic food webs rest on a base of microscopic photosynthesisers, and understanding that base is what makes the rest of this sub-topic — overfishing, aquaculture, acidification — make sense.

📚 What you need to know

Phytoplankton: the base of nearly everything

Phytoplankton are microscopic organisms found in both marine and fresh water that can photosynthesise. The word “plankton” describes how they live — drifting — not what they are.

Calling phytoplankton “tiny plants” will cost you a mark. Cyanobacteria are bacteria, and diatoms are not plants either. Say “photosynthetic microorganisms” and you are safe.

Macrophytes: the visible producers

Macrophytes are aquatic plants visible to the naked eye. They split into three types by where they sit relative to the water surface.

THREE KINDS OF MACROPHYTE Named by where they sit relative to the water surface. EMERGENT FLOATING SUBMERGED cattails, bulrushes water lilies, duckweed seagrass
All three photosynthesise and all three cycle nutrients, but they also do something phytoplankton cannot: provide physical habitat. Seagrass beds in particular are nursery grounds for young fish, which is why losing them costs a fishery as well as an ecosystem.

Energy flow through the web

WHO EATS WHAT IN THE WATER Each level is narrower because energy is lost at every transfer. most energy is lost as heat at each step TERTIARY CONSUMERS SECONDARY CONSUMERS PRIMARY CONSUMERS PRODUCERS phytoplankton and macrophytes capture sunlight sharks, large fish, birds of prey larger fish and birds zooplankton, small fish DECOMPOSERS recycle nutrients
Decomposers sit outside the ladder because they feed on dead material from every level. Bacteria and fungi break it down and return the nutrients to the water, where producers take them up again.
LevelWho is thereWhat they do
ProducersPhytoplankton and macrophytesCapture sunlight by photosynthesis, produce oxygen, build biomass
Primary consumersZooplankton, small fish, some invertebrates and birdsFeed directly on the producers
Secondary consumersLarger fish and birdsEat the primary consumers
Tertiary consumersTop predators such as sharks and birds of preyEat secondary consumers; usually few in number
DecomposersAquatic bacteria and fungiBreak down dead organisms and return nutrients to the ecosystem
Why the pyramid narrows. Only a small fraction of the energy at one level is passed on to the next — the rest is lost in respiration, movement and heat. That is why top predators are rare, why they are so vulnerable to overfishing, and why eating lower down a food chain feeds more people from the same energy.

Worked examples

EXAM Q1

Distinguish between phytoplankton and macrophytes. [2]

Phytoplankton Microscopic photosynthetic organisms — algae and cyanobacteria — that drift in the water and are not plants. Macrophytes Aquatic plants visible to the naked eye, growing emergent, floating or submerged. Both are producers, but only one group is actually plants the size difference alone is not enough for both marks
EXAM Q2

Explain why there are far fewer sharks than small fish in a marine ecosystem. [3]

Point 1: energy is lost at each transfer Only a small proportion of energy passes from one trophic level to the next; the rest is lost mainly as heat from respiration. Point 2: less energy available higher up Sharks are tertiary consumers, several transfers above the producers, so far less energy reaches them. Point 3: consequence That energy supports a much smaller total biomass, so top predator populations stay small. Fewer sharks because there is less energy left at the top this also explains why top predators recover so slowly from overfishing

💡 Exam tip

⚠ Common mix-up

Up next: Rising Demand for Seafood — what we take out of these webs, and how fast that amount has grown.

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