Seawater carbonate chemistry and metabolic rates, bloodbased metrics in newborn blacktip reef sharks
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| Format: | Dataset Open Access |
| Language: | en |
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PANGAEA
2020
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| _version_ | 1867171024170123264 |
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| author | Rummer, Jodie L Bouyoucos, Ian A Mourier, Johann Nakamura, Nao Planes, Serge |
| author_facet | Rummer, Jodie L Bouyoucos, Ian A Mourier, Johann Nakamura, Nao Planes, Serge |
| collection | Datos científicos de ciencias marinas y ambientales |
| contents | Anthropogenic ocean acidification (OA) is a threat to coral reef fishes, but few studies have investigated responses of high-trophic-level predators, including sharks. We tested the effects of 72-hr exposure to OA-relevant elevated partial pressures of carbon dioxide (pCO2) on oxygen uptake rates, acid–base status, and haematology of newborn tropical blacktip reef sharks (Carcharhinus melanopterus). Acute exposure to end-of-century pCO2 levels resulted in elevated haematocrit (i.e. stress or compensation of oxygen uptake rates) and blood lactate concentrations (i.e. prolonged recovery) in the newborns. Conversely, whole blood and mean corpuscular haemoglobin concentrations, blood pH, estimates of standard and maximum metabolic rates, and aerobic scope remained unaffected. Taken together, newborn blacktip reef sharks appear physiologically robust to end-of-century pCO2 levels, but less so than other, previously investigated, tropical carpet sharks. Our results suggest peak fluctuating pCO2 levels in coral reef lagoons could still physiologically affect newborn reef sharks, but studies assessing the effects of long-term exposure and in combination with other anthropogenic stressors are needed. |
| format | Dataset Open Access |
| id | pangaea_https___doi_org_10_1594_PANGAEA_926819 |
| institution | PANGAEA |
| language | en |
| publishDate | 2020 |
| publisher | PANGAEA |
| record_format | pangaea |
| spellingShingle | Seawater carbonate chemistry and metabolic rates, bloodbased metrics in newborn blacktip reef sharks Rummer, Jodie L Bouyoucos, Ian A Mourier, Johann Nakamura, Nao Planes, Serge Absolute aerobic scope; Alkalinity, total; Alkalinity, total, standard deviation; Animalia; Aragonite saturation state; Bicarbonate ion; Calcite saturation state; Calculated using CO2SYS; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Carcharhinus melanopterus; Chordata; Coast and continental shelf; Experiment duration; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Haematocrit; Haemoglobin; Identification; Laboratory experiment; Lactate; Length; Length, standard deviation; Mass; Mass, standard deviation; Mean corpuscular haemoglobin concentration; Mesocosm or benthocosm; Metabolic rate, maximum; Metabolic rate, standard; Nekton; OA-ICC; Ocean acidification; Ocean Acidification International Coordination Centre; Other studied parameter or process; Partial pressure of carbon dioxide, standard deviation; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Pelagos; pH; pH, standard deviation; pH, total scale; Potentiometric; Potentiometric titration; Registration number of species; Respiration; Salinity; Salinity, standard deviation; Single species; South Pacific; Species; Temperature, water; Temperature, water, standard deviation; Treatment; Tropical; Type; Uniform resource locator/link to reference Anthropogenic ocean acidification (OA) is a threat to coral reef fishes, but few studies have investigated responses of high-trophic-level predators, including sharks. We tested the effects of 72-hr exposure to OA-relevant elevated partial pressures of carbon dioxide (pCO2) on oxygen uptake rates, acid–base status, and haematology of newborn tropical blacktip reef sharks (Carcharhinus melanopterus). Acute exposure to end-of-century pCO2 levels resulted in elevated haematocrit (i.e. stress or compensation of oxygen uptake rates) and blood lactate concentrations (i.e. prolonged recovery) in the newborns. Conversely, whole blood and mean corpuscular haemoglobin concentrations, blood pH, estimates of standard and maximum metabolic rates, and aerobic scope remained unaffected. Taken together, newborn blacktip reef sharks appear physiologically robust to end-of-century pCO2 levels, but less so than other, previously investigated, tropical carpet sharks. Our results suggest peak fluctuating pCO2 levels in coral reef lagoons could still physiologically affect newborn reef sharks, but studies assessing the effects of long-term exposure and in combination with other anthropogenic stressors are needed. |
| title | Seawater carbonate chemistry and metabolic rates, bloodbased metrics in newborn blacktip reef sharks |
| topic | Absolute aerobic scope; Alkalinity, total; Alkalinity, total, standard deviation; Animalia; Aragonite saturation state; Bicarbonate ion; Calcite saturation state; Calculated using CO2SYS; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Carcharhinus melanopterus; Chordata; Coast and continental shelf; Experiment duration; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Haematocrit; Haemoglobin; Identification; Laboratory experiment; Lactate; Length; Length, standard deviation; Mass; Mass, standard deviation; Mean corpuscular haemoglobin concentration; Mesocosm or benthocosm; Metabolic rate, maximum; Metabolic rate, standard; Nekton; OA-ICC; Ocean acidification; Ocean Acidification International Coordination Centre; Other studied parameter or process; Partial pressure of carbon dioxide, standard deviation; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Pelagos; pH; pH, standard deviation; pH, total scale; Potentiometric; Potentiometric titration; Registration number of species; Respiration; Salinity; Salinity, standard deviation; Single species; South Pacific; Species; Temperature, water; Temperature, water, standard deviation; Treatment; Tropical; Type; Uniform resource locator/link to reference |
| url | https://doi.org/10.1594/PANGAEA.926819 |