NARA Discovery
Article Details
← Back to Search Results
Journal Article

Coral acclimatization to novel, co-varying stressors is associated with fitness trade-offs

Sarah L. Solomon; Christian R. A. Lippens; Riccardo Mazza; Maya E. Powell; Kelly W. Johnson; Sophia Suvacarov; Rene M. van der Zande; Verena Schoepf
Coral Reefs · 2026

Abstract

Reef-building corals are under pressure to acclimatize and/or adapt to multiple co-occurring stressors, including climate change and declines in water quality. However, their capacity to do so is largely unknown. Yet, some corals naturally persist in habitats with multi-stressor conditions which can provide crucial insight into coral adaptive capacity under future ocean conditions. To assess the role of phenotypic plasticity and local adaptation in coral acclimatory responses to novel conditions, we reciprocally transplanted two coral species ( Siderastrea siderea , branching Porites ) between an inland bay characterized by multiple, co-varying stressors, including warmer seawater temperatures, higher pollution and more variable temperatures, pH and dissolved oxygen concentrations, and an environmentally less extreme, more stable fringing reef. We measured key phenotypic traits (e.g., calcification, tissue biomass, metabolic rates, chlorophyll concentrations) of all transplant groups after 0, 4 and 12 months. Reef-origin corals demonstrated high plasticity when transplanted to the bay, as both species maintained high survival and calcification, and matched bay natives’ other phenotypic traits. Yet, reef-to-bay transplants of both species had reduced photosynthesis-to-respiration ratios in the bay, highlighting the risk of metabolic trade-offs unless compensated for through increased heterotrophy. Conversely, bay-origin corals had enhanced photosynthetic performance but lower calcification on the reef. Reaction norms provided stronger evidence for environmental specialization in bay-origin than reef-origin corals, which could limit their use as stress-tolerant source corals for reef restoration. Overall, our findings suggest multi-stressor variability may promote specialized genotypes, rather than increased phenotypic plasticity, though this may also depend on predictability of environmental variability.

Bibliographic Information

JournalCoral Reefs
PublisherSpringer
Publication Date2026-08-18
Publication Year2026
Document TypeJournal Article
Print ISSN0722-4028
eISSN1432-0975
DOI10.1007/s00338-026-02943-7

Access Information

NARA Access Coverage1982-01-01~Current
Journal Homepagehttps://www.springer.com/journal/338
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.