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February 5, 2026Oikos1 citationsOpen Access

The effects of single versus successive warm summers on an intertidal community

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AHAmelia V. HeskethCKCassandra A. KonecnySESandra M. Emry

Key Points

  • The aim is to evaluate how intertidal communities respond to single versus consecutive warm summers under climate change conditions.
  • Conducted a two-year passive thermal manipulation experiment in coastal British Columbia
  • Assessed the impact of warm temperatures on organism densities and community structure
  • Compared responses of intertidal communities to single and successive warm summers
  • Warm temperatures led to reduced organism densities and altered population dynamics
  • Persistent negative effects on community structure and diversity were observed over the two years
  • No significant interactive effect of warming between the first and second year was found, suggesting recovery from single warm summers is possible.

Abstract

To accurately predict how organisms and ecological communities will respond to future conditions caused by climate change, we must consider the temporal dynamics of environmental stressors, including the effects of repeated exposures to stress. We performed a two‐year passive thermal manipulation in coastal British Columbia, Canada to determine how intertidal communities responded to single and successive warm summers. Warm temperatures had both negative contemporaneous effects within years and persistent negative effects across years. Warming reduced organism densities, altered population dynamics, and affected community structure and diversity, patterns which were likely mediated by differences in foundation species (barnacle) abundance between treatments. Unexpectedly, the effects of warming in the second year were rarely dependent on whether temperatures were warm during the first year (i.e. no interactive effect). Our study suggests that, while this intertidal community can recover from single warm summers, recurring warming has additive negative effects, resulting in a more depauperate, less diverse community over time, particularly if foundation species are negatively affected.

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Cite This Study

Hesketh et al. (2026) studied this question.

synapsesocial.com/papers/69843398f1d9ada3c1fb0e2fhttps://doi.org/10.1002/oik.11864
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