This study describes the effects of temperature on the respiration of brooded larvae of scleractinian corals, and evaluates the implications of these effects relative to seawater temperature when peak larval release occurs. Respiration rates of larvae from Pocillopora damicornis, Seriatopora hystrix and Stylophora pistillata were quantified in darkness as oxygen uptake during 1-3 h exposures to five temperatures between 26.4 and 29.6°C. To assess the biological significance of these experiments, the temperature of the seawater into which larvae of P. damicornis and S. hystrix were released was measured for 32-34 months over 5 years between 2003 and 2008. Mean respiration varied from 0.029 to 0.116 nmol O₂ larva⁻¹ min⁻¹, and was related para...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...
<div><p>Ocean acidification and warming are expected to threaten the persistence of tropical coral r...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...
This study describes the effects of temperature on the respiration of brooded larvae of scleractinia...
This study describes the effects of temperature on the respiration of brooded larvae of scleractinia...
To evaluate the effects of temperature and pCO₂ on coral larvae, brooded larvae of Pocillopora damic...
To evaluate the effects of temperature and pCO2 on coral larvae, brooded larvae of Pocillopora damic...
To evaluate the effects of temperature and pCO2 on coral larvae, brooded larvae of Pocillopora damic...
Establishing the thermal reaction norm of coral larvae under elevated pCO2 is crucial to anticipate ...
Although algal symbionts can become a source of reactive oxygen species under stressful conditions, ...
Although algal symbionts can become a source of reactive oxygen species under stressful conditions, ...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...
Abstract: Although algal symbionts can become a source of reactive oxygen species under stressful co...
Efforts to evaluate the response of coral larvae to global climate change (GCC) and ocean acidificat...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...
<div><p>Ocean acidification and warming are expected to threaten the persistence of tropical coral r...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...
This study describes the effects of temperature on the respiration of brooded larvae of scleractinia...
This study describes the effects of temperature on the respiration of brooded larvae of scleractinia...
To evaluate the effects of temperature and pCO₂ on coral larvae, brooded larvae of Pocillopora damic...
To evaluate the effects of temperature and pCO2 on coral larvae, brooded larvae of Pocillopora damic...
To evaluate the effects of temperature and pCO2 on coral larvae, brooded larvae of Pocillopora damic...
Establishing the thermal reaction norm of coral larvae under elevated pCO2 is crucial to anticipate ...
Although algal symbionts can become a source of reactive oxygen species under stressful conditions, ...
Although algal symbionts can become a source of reactive oxygen species under stressful conditions, ...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...
Abstract: Although algal symbionts can become a source of reactive oxygen species under stressful co...
Efforts to evaluate the response of coral larvae to global climate change (GCC) and ocean acidificat...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...
<div><p>Ocean acidification and warming are expected to threaten the persistence of tropical coral r...
Ocean acidification and warming are expected to threaten the persistence of tropical coral reef ecos...