Insect life cycles and evolution due to climate change

Ecosystems (Continuity and change) · Climate change · note 7 of 7

Spec D4.3.11, D4.3.12
HL only (what this means)HL only: additional Higher Level content, only for HL students. SL students can skip it. What the labels mean
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Insect life cycles and evolution due to climate changeSpec D4.3.11, D4.3.12

In short

Climate change increases the number of insect life cycles within a year: warmer, longer summers let the spruce bark beetle complete two or more generations instead of one, causing outbreaks that kill spruce trees. Climate change also causes evolution: with less snow cover, brown tawny owls have gained fitness relative to grey ones.

More insect life cycles per year

Insect development speeds up at higher temperatures, and warmer springs and autumns lengthen the breeding season. The spruce bark beetle (Ips typographus) used to complete one generation a year in much of northern Europe. In warmer years it can now complete two, or even three.

  • Populations grow much faster, leading to outbreaks.
  • Beetles bore into spruce bark and lay eggs; larvae feed beneath the bark, killing trees.
  • Drought-stressed trees produce less resin to defend themselves, so damage increases further.

Evolution as a consequence of climate change

The tawny owl (Strix aluco) has two heritable colour variants, grey and brown. In cold, snowy winters, grey owls survive better than brown ones, probably because they are better camouflaged against snow and cope better with cold. As winters in Finland have had less snow cover, the survival disadvantage of brown owls has weakened, so their fitness has increased. The proportion of brown owls in the population has risen, a change in allele frequency.

Exam tip:

Link back to natural selection: the colour is heritable, the selection pressure (snow cover) has changed, so the fitter variant leaves more offspring and allele frequencies change.

Quick check

  1. Which two greenhouse gases does the guide limit anthropogenic causes to?

    Show answer

    Carbon dioxide and methane.

  2. What is legacy carbon?

    Show answer

    Old organic carbon in deep soil layers of boreal forest that survived earlier fires.

  3. What causes coral bleaching?

    Show answer

    Increases in water temperature cause corals to expel their symbiotic algae.

  4. HL only What is phenology?

    Show answer

    Research into the timing of biological events.

  5. HL only Why are spruce bark beetle outbreaks increasing?

    Show answer

    Warming lets them complete more life cycles each year.

Written and checked against the IB Biology HL specification · Updated October 2026

Frequently asked questions

What are positive feedback loops in climate change?

Positive feedback loops are cycles in which warming causes changes that cause more warming. Examples are loss of reflective snow and ice, so more solar radiation is absorbed; thawing permafrost releasing CO₂ and methane; CO₂ released from the deep ocean; and more droughts and forest fires releasing carbon.

How does climate change affect coral reefs?

Climate change threatens coral reefs in two ways. Increased carbon dioxide causes ocean acidification, which suppresses calcification so corals build skeletons more slowly. Higher water temperatures cause coral bleaching, when corals expel their symbiotic algae and may die. Loss of corals causes collapse of the whole reef ecosystem.

Why are species moving to higher altitudes and towards the poles?

Species are moving because warming makes the warm edge of their range too hot, while cooler places further upslope or poleward become suitable. Tropical montane birds in New Guinea have shifted upslope, and some North American trees show contraction at their warm edge and northward spread.

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