IB ESS SL Topic 4 — Aquatic Food Production Systems Paper 1 & 2 Core idea ~11 min read

Overfishing and Damaging Harvest Methods

A fish stock is a renewable resource, but only if you take less than it grows back. Push past that line and the resource stops renewing. The Grand Banks cod fishery survived five centuries of fishing and then collapsed in about thirty years — and it has never fully recovered.

📚 What you need to know

Four damaging practices

Bottom trawling

Heavy nets are dragged along the seabed, catching everything in their path.

WHAT BOTTOM TRAWLING DOES One pass takes the catch and the habitat together. TRAWLER bycatch caught too sediment plume seabed habitat flattened The damage is not a side effect of the method; it is the method.
Bycatch is the part students forget to mention. Everything the net meets is caught, and non-target species are usually thrown back dead — so the ecological cost is far larger than the landed catch suggests.

Ghost fishing

Poisons

Explosives

Notice that poisons and explosives are both short-term wins with long-term losses: they destroy the habitat that produces the next generation of fish. It is the tipping-point idea from Topic 2, applied underwater.

Overexploitation and maximum sustainable yield

Better boats, sonar, bigger nets and freezer holds have all raised how much can be taken. Overexploitation happens when fish are harvested faster than they can reproduce, and if it continues the population can fall so low that the fishery collapses and cannot recover.

Two definitions to keep separate annual yield = the yearly gain in biomass or energy through growth
maximum sustainable yield = the largest amount that can be harvested each year without reducing long-term productivity

MSY is calculated from population size, growth rate and reproduction rate, and it is what quotas are supposed to be based on. Harvest at MSY and the catch can, in principle, continue indefinitely. Harvest above it and the stock shrinks year on year.

WHY FISHING CARRIES ON PAST THE LIMIT Catch peaks long before profit disappears. MSY maximum sustainable yield yield falls as the stock is depleted fishing cost no longer profitable still profitable, so effort keeps rising yield (catch) fishing effort (days at sea) Without regulation, boats stop only when the money runs out, not when the fish do.
The gap between the blue peak and the red crossing point is the whole problem. Between those two points the catch is falling and the stock is being destroyed, but each individual boat is still making money — so nobody stops voluntarily.

Case study: cod on the Grand Banks

The Grand Banks, southeast of Newfoundland in Canada, were among the richest fishing grounds on Earth. Cod had been fished there since the fifteenth century.

🧩 How a five-century fishery collapsed in thirty years

  1. 1960s. New fishing technology — bigger trawlers, sonar, factory ships — pushed catches sharply upwards.
  2. 1970s to 1980s. Catches stayed at peak levels even as the underlying cod population was falling.
  3. Early 1980s. Scientists warned that the stock was being overfished. The warnings were not acted on.
  4. Late 1980s. Cod stocks were severely depleted.
  5. 1992. The Canadian government imposed a moratorium, closing the fishery to allow recovery.

Why it happened: overfishing driven by high demand and advanced technology, combined with inadequate management — quotas were set too high and were not based on scientific advice, and enforcement was poor.

What it cost: around 40 000 jobs were lost in the fishing industry, and communities across Newfoundland and Labrador went into severe economic decline. Ecologically, the cod population crashed and recovery has been slow.

Where it stands now: cod numbers have improved somewhat, but decades later they remain far below historic levels. The ecosystem itself has changed — other species moved into the space cod used to occupy — so full recovery may take many more years, or may never happen. Management today is adaptive, trying to balance ecological recovery against the economic needs of fishing communities.

The transferable lesson. Collapse did not come from a lack of knowledge — the warnings existed. It came from setting quotas politically rather than scientifically, and from a system where stopping fishing was costly today while the collapse was a problem for later.

Worked examples

EXAM Q1

Define maximum sustainable yield and explain why exceeding it is a problem. [3]

Step 1: definition The largest catch that can be taken each year without reducing the long-term productivity of the stock. Step 2: what exceeding it does Fish are removed faster than they reproduce, so the breeding population shrinks. Step 3: the consequence Yields fall in later years and the fishery may collapse beyond recovery. Above MSY the resource stops being renewable “without compromising long-term productivity” is the phrase worth memorising
EXAM Q2

Explain two ecological impacts of bottom trawling. [4]

Impact 1: habitat destruction Heavy gear flattens seabed habitats such as reefs, removing shelter and nursery grounds, so biodiversity falls. Impact 2: bycatch Non-target species are caught and usually discarded dead, including juveniles and protected species, which disrupts food webs. The method removes the habitat as well as the catch sediment disturbance and pollutant release is a valid third impact
EXAM Q3

Using the Grand Banks, explain why fisheries collapse even when the risk is known. [4]

Point 1: it stays profitable Catch falls past MSY but fishing remains commercially viable, so effort does not drop. Point 2: management failure Quotas were set too high and not based on scientific advice, and enforcement was weak. Point 3: short-term pressure Jobs and income depend on fishing now, so restrictions are politically difficult. Point 4: the outcome By 1992 the stock had collapsed; about 40 000 jobs went anyway, and recovery is still incomplete. Delaying the cost did not avoid it — it made it larger the irony is the strongest evaluation point available here

💡 Exam tip

⚠ Common mix-up

Up next: Protecting Fish Stocks — the tools that work, from mesh size to marine protected areas, and who has to use them.

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