IB ESS HL Topic 2 — Ecology Paper 1 & 2 HL only ~10 min read

r and K Reproductive Strategies

A dandelion makes thousands of seeds and abandons every one of them. An elephant has a single calf every four years and guards it for a decade. Neither is doing it wrong. They are two different bets about what the future looks like, and which bet pays off depends on where the ecosystem is in succession.

📘 What you need to know

r-strategists: quantity

An r-strategist bets on numbers. It grows fast, matures early, and pours everything into making as many offspring as possible in as little time as possible.

Why does that work? Because in an unstable habitat, resources are temporary and unpredictable, and the whole population can be wiped out by a frost or a flood no matter how carefully any parent behaves. Investing in one offspring is a bad bet when the environment might delete it anyway. Better to produce thousands and let the odds do the work.

This is exactly the situation on bare or disturbed ground, which is why r-strategists dominate pioneer communities. Competition is low, sunlight and nutrients are suddenly available, and whoever arrives first and breeds fastest takes the space.

K-strategists: quality

A K-strategist bets on care. It lives in a stable, crowded habitat that is already at or near its carrying capacity, so every resource is fought over.

In a climax community there is no free space. A seedling has to survive under a closed canopy for years. Producing a thousand tiny offspring into that environment is a waste, because none of them has the reserves to compete. Producing a few well-provisioned ones that can actually make it is the better strategy.

It is a sliding scale, not two boxes most species sit somewhere in the middle r-strategist end K-strategist end bacteria greenfly dandelion rabbit oak elephant r-strategists many small offspring, no care short life, breeds early and fast thrive in pioneer communities K-strategists few large offspring, much care long life, breeds late and slowly thrive in climax communities Ask which end a species is closer to, not which box it belongs in. A rabbit breeds like an r-strategist but cares for its young like a K-strategist.
Putting species on a line rather than in two piles saves you from arguments about awkward cases, and examiners accept a justified position anywhere along it.

Survivorship: the same story, seen from the offspring

A useful way to see the difference is to follow 1000 newborns through life and plot how many are still alive at each age.

Where the deaths happen start with 100 newborns and follow them % still alive 100 50 0 K-strategist: few young die r-strategist: nearly all young die age (as a share of the maximum lifespan) Same outcome, opposite timing: both lines end at the bottom. Parental care does not stop death; it moves it to the end of life.
Both strategies end up replacing themselves. The r-strategist pays for it with huge numbers of losses at the start; the K-strategist pays for it with years of parental effort.

The comparison table

Feature r-strategist K-strategist
Number of offspring Many Few
Parental care Little or none Substantial
Survival rate of young Low High
Body size Small Large
Lifespan Short Long
Age at maturity Early Late
Reproductive rate High Low
Niche Generalist Specialist
Population limited by Density-independent factors Density-dependent factors
Typical habitat Unstable, disturbed, pioneer Stable, crowded, climax
Examples Annual weeds, insects, small rodents Oak trees, large mammals, some reptiles
Density-dependent or density-independent? A density-dependent factor bites harder when the population is crowded: competition, disease, predation. A density-independent factor does not care how many there are: a frost kills the same proportion whether there are ten or ten thousand. r-strategists live with the second kind, K-strategists with the first.
There is a real-world sting in this. Because K-strategists breed slowly and have few young, their populations recover very slowly once they are reduced. That is why whales, sharks, elephants and slow-growing tropical hardwoods end up on endangered lists, while weeds and insect pests never do.

Worked examples

WORKED EXAMPLE 1

A plant grows on abandoned building sites. It germinates in spring, flowers within eight weeks, releases about 4000 wind-blown seeds and then dies. Classify its strategy and justify your answer.

Pick out the evidence Very many offspring, no parental care, matures in weeks, lives one season, colonises disturbed ground. Match it to the strategy Every one of those points sits at the r end of the spectrum. Explain why it suits the habitat Building sites are unstable and may be cleared at any time, so a species that breeds fast and disperses widely can exploit the space before it disappears. r-strategist, suited to unstable, disturbed habitats Justify with at least two features. One is rarely enough for the marks.
WORKED EXAMPLE 2

Explain why r-strategists dominate an area in the first few years after a forest fire, but are largely gone thirty years later. (3 marks)

Mark 1: conditions straight after the fire The ground is open, light and nutrients from ash are freely available, and competition is very low. Mark 2: why r-strategists win there They disperse widely, germinate fast and reproduce quickly, so they occupy the space before anything else can. Mark 3: what changes over thirty years Shrubs and trees grow up and shade the ground, so competition for light becomes intense and the small, short-lived r-strategists are outcompeted by K-strategists. They win the race for empty space, then lose the fight for a crowded one
WORKED EXAMPLE 3

Two fish stocks are overfished by the same amount. One is a small fish that matures in a year and spawns millions of eggs; the other is a shark that matures at fifteen and has a few pups. Suggest which recovers faster and why.

Identify the strategies Small fish = r-strategist; shark = K-strategist. Link strategy to recovery The r-strategist matures within a year and produces huge numbers of eggs, so numbers can climb again within a few breeding seasons. Contrast The shark takes fifteen years to reach breeding age and has very few young, so the population grows extremely slowly and may not recover at all. The small fish recovers far faster; the shark is much more vulnerable This is why fishing quotas are far tighter for slow-breeding species.

💡 Exam tip

⚠ Common mix-up

Up next: Climax Communities and Arrested Succession — what the end of succession really looks like, and why so much of the countryside never gets there.

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