Thermal stress reveals a genotype-specific tradeoff between growth and tissue loss in restored Acropora cervicornis
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- Type
- article
- Published
- 2017-05-31
- Cited by
- 58
- References
- 52
- OpenAlex
- https://openalex.org/W2609673519
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:90911505
Keywords
Acropora, Coral, Biology, Ecology, Reef
References
- Ecosystem recovery after climatic extremes enhanced by genotypic diversity.
- Does host genotype diversity affect the distribution of insect and disease damage in willow cropping systems
- Density‐dependent effects on initial growth of a branching coral under restoration
- Partitioning selection and complementarity in biodiversity experiments
- Performance of single versus mixed coral species for transplantation to restore degraded reefs
- Fish-derived nutrient hotspots shape coral reef benthic communities.
- Lost opportunities: coral recruitment does not translate to reef recovery in the Florida Keys.
- Indirect effects of species interactions on habitat provisioning
- Breakage and propagation of the stony coral Acropora cervicornis.
- Long-Term Region-Wide Declines in Caribbean Corals
- Predicting climate-driven regime shifts versus rebound potential in coral reefs
- Morphological and physiological variation among seagrass (Zostera marina) genotypes
- A restoration genetics guide for coral reef conservation
- A Review of Reef Restoration and Coral Propagation Using the Threatened Genus Acropora in the Caribbean and Western Atlantic
- Colony growth of corals transplanted for restoration depends on their site of origin and environmental factors
- Regional Decline of Coral Cover in the Indo-Pacific: Timing, Extent, and Subregional Comparisons
- The 27–year decline of coral cover on the Great Barrier Reef and its causes
- Storm-generated coral fragments - A viable source of transplants for reef rehabilitation
- Realistic changes in seaweed biodiversity affect multiple ecosystem functions on a rocky shore.
- Contrasting futures for ocean and society from different anthropogenic CO2 emissions scenarios
Cited by
- Harnessing ecological processes to facilitate coral restoration
- Symbiotic immuno-suppression: is disease susceptibility the price of bleaching resistance?
- Estimating the heritability of thermal tolerance in Acropora cervicornis and the physiological basis of adaptation that correlates to survival at elevated temperatures
- Comparison of microbiomes of cold-water corals Primnoa pacifica and Primnoa resedaeformis, with possible link between microbiome composition and host genotype
- Potential feedback between coral presence and farmerfish collective behavior promotes coral recovery
- Optimizing return‐on‐effort for coral nursery and outplanting practices to aid restoration of the Great Barrier Reef
- Scaling Up Coral Reef Restoration Using Remote Sensing Technology
- Metabolomic profiles differ among unique genotypes of a threatened Caribbean coral
- Insights from intralocus tactical conflict: adaptive states, interactions with ecology and population divergence
- Considerations for maximizing the adaptive potential of restored coral populations in the western Atlantic
- Variability in skeletal bulk densities of common hard corals in Southeast Asia
- Coral restoration in a changing world - a global synthesis of methods and techniques
- Climate Change, Human Impacts, and Coastal Ecosystems in the Anthropocene.
- Microbiome differences in disease-resistant vs. susceptible Acropora corals subjected to disease challenge assays
- Resilience in reef‐building corals: The ecological and evolutionary importance of the host response to thermal stress
- Incorporating Ecological Processes into Coral Reef Restoration
- Differential disturbance effects and phenotypic plasticity among outplanted corals at patch and fore reef sites
- Survivorship and growth in staghorn coral (Acropora cervicornis) outplanting projects in the Florida Keys National Marine Sanctuary
- Coral bleaching susceptibility is predictive of subsequent mortality within but not between coral species
- Science-based approach to using growth rate to assess coral performance and restoration outcomes
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