Resilience in reef-building corals: The ecological and evolutionary importance of the host response to thermal stress

Mol Ecol. 2020 Feb;29(3):448-465. doi: 10.1111/mec.15337. Epub 2020 Jan 14.

Abstract

Coral reefs are under extreme threat due to a number of stressors, but temperature increases due to changing climate are the most severe. Rising ocean temperatures coupled with local extremes lead to extensive bleaching, where the coral-algal symbiosis breaks down and corals may die, compromising the structure and function of reefs. Although the symbiotic nature of the coral colony has historically been a focus of research on coral resilience, the host itself is a foundational component in the response to thermal stress. Fixed effects in the coral host set trait baselines through evolutionary processes, acting on many loci of small effect to create mosaics of thermal tolerance across latitudes and individual coral reefs. These genomic differences can be strongly heritable, producing wide variation among clones of different genotypes or families of a specific larval cross. Phenotypic plasticity is overlaid on these baselines and a growing body of knowledge demonstrates the potential for acclimatization of reef-building corals through a variety of mechanisms that promote resilience and stress tolerance. The long-term persistence of coral reefs will require many of these mechanisms to adjust to warmer temperatures within a generation, bridging the gap to reproductive events that allow recombination of standing diversity and adaptive change. Business-as-usual climate scenarios will probably lead to the loss of some coral populations or species in the future, so the interaction between intragenerational effects and evolutionary pressure is critical for the survival of reefs.

Keywords: adaptation; climate change; cnidarians; phenotypic plasticity.

Publication types

  • Research Support, Non-U.S. Gov't
  • Review

MeSH terms

  • Acclimatization / genetics
  • Adaptation, Physiological / genetics
  • Animals
  • Anthozoa / genetics*
  • Biological Evolution
  • Climate
  • Climate Change
  • Coral Reefs
  • Ecology
  • Genotype
  • Hot Temperature
  • Humans
  • Stress, Physiological / genetics*
  • Symbiosis / genetics
  • Temperature