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January 25, 2026Biological Journal of the Linnean Society1 citations

Thermal refugia indicate physiological evolution in Atlantic reef corals

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SFSamuel Coelho FariaGGGretchen Goodbody-GringleyMKMarcelo Visentini Kitahara

Key Points

  • To investigate physiological differences in Atlantic reef corals from Brazil and Bermuda under climate change conditions.
  • Compared coral species from southwestern Atlantic reefs in Brazil and northwestern reefs in Bermuda.
  • Measured chlorophyll a packing, oxidative stress, and heterotrophic capacity.
  • Assessed coral responses to simulated climate change, observing calcification and bleaching tolerance.
  • Brazilian corals showed 3.1-fold higher chlorophyll a packing compared to Bermudian corals.
  • Lower oxidative stress was maintained in Brazilian species despite bleaching events.
  • Calcification remained stable across both regions under stress, suggesting resilience.

Abstract

Abstract Coral reefs are increasingly threatened by climate change, especially by thermally driven bleaching events. Southwestern Atlantic reefs (Brazil) have been proposed as potential climate refugia owing to high turbidity, which attenuates light and mitigates thermal stress. In contrast, Northwestern reefs (Bermuda) experience greater light penetration and serve as a comparative system, given their phylogenetic proximity to Brazilian corals. We hypothesized that Brazilian species would differ physiologically under their selective regimes. Indeed, they had higher chlorophyll a packing, sustaining comparable autotrophy and lower oxidative stress. Heterotrophic capacity, however, was similar between regions, challenging the turbidity-feeding paradigm. We also expected that Brazilian species would have greater tolerance to bleaching under simulated climate change. Although corals from both regions bleached, Brazilian representatives increased chlorophyll a packing 3.1-fold and maintained lower oxidative stress, while trophic behaviour remained stable. Calcification persisted under stress, indicating functional resilience across regions. These findings show that symbiosis and oxidative status, rather than trophic strategy, distinguish corals from Brazil, suggesting a compensatory role of chlorophyll a packing and enhanced redox balance under low-light regimes, the latter possibly reflecting relaxed selection and, ultimately, driving convergent physiological evolution. This work offers ecophysiological insight to guide conservation strategies, highlighting refugia as conservation priorities under local-scale stressors.

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Cite This Study

Faria et al. (2025) studied this question.

synapsesocial.com/papers/6975b1a9feba4585c2d6d220https://doi.org/10.1093/biolinnean/blaf130
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