Ocean acidification reshapes the otolith-body allometry of growth in juvenile sea bream
Abstract:
The effects of elevated CO<inf>2</inf> partial pressure (pCO<inf>2</inf>) on otolith calcification and on the coupling between somatic and otolith growth were investigated in juvenile gilthead sea bream Sparus aurata. Six-month old individuals were raised during seven weeks under four pCO<inf>2</inf> conditions set according to projected future ocean acidification scenarios. Body and otolith biometric parameters were measured throughout the experiment along with the otolith biomineralization monitored using a radiotracer technique based on <sup>45</sup>Ca incorporation. Sea bream exhibited somatic growth resilience to all treatments. In contrast, increased growth rate and shape complexity of otoliths were observed with a pH<inf>T</inf> drop from 8.1 to 7.5. Hypercalcification was observed under lowered pH, with a rate of calcium incorporation increasing by up to 18% between pH<inf>T</inf> 8.1 and pH<inf>T</inf> 7.7. This work highlighted an uncoupling of otolith and body growth of juvenile sea bream within 40days at pH<inf>T</inf> 7.9 projected to be reached by the end of the century. As the otolith is an essential tool used in reconstructing fish life history, this work suggests that information resulting from otolith studies should be interpreted with caution with respect to the potential impacts that ocean acidification projected modifications could have on otolith biomineralization.
Año de publicación:
2015
Keywords:
- Temperate coastal fish
- Somatic-otolith growth allometry
- Otolith calcification
- Ocean acidification
- Climate change
Fuente:
scopusTipo de documento:
Article
Estado:
Acceso restringido
Áreas de conocimiento:
- Ecología
- Ecología
Áreas temáticas de Dewey:
- Temas específicos de historia natural de los animales
- Vertebrados de sangre fría
Objetivos de Desarrollo Sostenible:
- ODS 14: Vida submarina
- ODS 13: Acción por el clima
- ODS 2: Hambre cero