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April 29, 2026Global Change Biology2 citationsOpen Access

Heatwaves Constrain the Future Persistence of Mosquito Vectors in Europe

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IKIsabelle KramerSVStien VereeckenAVAdwine Vanslembrouck

Key Points

  • This research aims to understand how heatwaves affect the persistence and distribution of mosquito vectors in Europe.
  • Examined upper thermal limits of Culex pipiens and Aedes species under different climate scenarios
  • Projected future conditions until 2100 for these mosquito vectors
  • Used integrated experimental and modelling approaches to assess heat tolerance
  • Culex pipiens faces significant risks in southern Europe by 2100 due to heat extremes
  • Aedes albopictus encounters moderate future constraints, while Aedes aegypti is less affected
  • Heat-limited zones are projected to expand northward into central Europe

Abstract

Climate warming is intensifying heatwaves across Europe, but the upper thermal limits of arboviral mosquito vectors-and their implications for future distribution-remain poorly understood. Using experimentally derived life-stage-specific upper thermal limits, we identified the impact of heat extremes on the persistence of Culex pipiens, Aedes albopictus and Aedes aegypti in Europe under present and future climate scenarios (SSP126, SSP370 and SSP585). Our projections reveal that by 2100, large parts of southern Europe, including the Iberian Peninsula, will exceed the thermal limits for Cx. pipiens, with heat-limited zones expanding northward into central Europe. Aedes albopictus faces moderate future constraints, while Ae. aegypti remains largely unrestricted by extreme heat, though high mortality at low humidity may still limit its establishment in continental Europe. Divergent plasticity in heat tolerance among life-stages, species, their acclimation status and the interplay with humidity exposure underscore the complexity of thermal adaptation. This integrative experimental-modelling framework highlights when and where it may become too hot for Europe's major mosquito vectors, refining spatial risk forecasts for arbovirus emergence under climate change.

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Cite This Study

Kramer et al. (2026) studied this question.

synapsesocial.com/papers/69f154f9879cb923c49455b6https://doi.org/10.1111/gcb.70876
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