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Sarah L Salois1,2, Tarik C Gouhier3, Brian Helmuth3

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Climate change impacts organism distribution. Upwelling creates hidden thermal refugia, offering cooler waters and temperature variability to aid survival along the European Atlantic Coast.

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Area of Science:

  • Marine ecology
  • Oceanography
  • Climate change biology

Background:

  • Organismal distribution is influenced by climate-driven environmental changes.
  • Understanding spatiotemporal patterns in environmental conditions is crucial for predicting species' responses to global change.
  • Intertidal zones are sensitive indicators of climate impacts.

Purpose of the Study:

  • To investigate the role of upwelling in creating spatiotemporal thermal refugia.
  • To quantify the effects of upwelling intensity on water temperature variation.
  • To predict how these thermal refugia influence organismal performance and distribution.

Main Methods:

  • Wavelet analysis was employed to examine daily water temperature variation.
  • Spatiotemporal (co)variation was analyzed across 16 intertidal sites along the European Atlantic Coast.
  • Upwelling intensity was categorized as 'no', 'weak', or 'strong'.

Main Results:

  • Weak upwelling sites showed high temperature synchrony but low co-variability at monthly to weekly scales.
  • Strong upwelling sites exhibited the opposite pattern, with lower synchrony and higher co-variability.
  • Wavelet coherence and correlograms indicated scale-dependent temperature fluctuations, with rapid spatial decay in strong upwelling areas.

Conclusions:

  • Upwelling generates both temporal and spatial thermal refugia, mitigating heat stress and reducing extreme temperature durations.
  • These refugia can enhance organismal performance by providing cooler waters and promoting fine-scale temperature fluctuations.
  • Identifying cryptic spatiotemporal refugia is essential for mapping potential organismal distribution patterns under climate change.