Seawater carbonate chemistry and biological processes during experiments with oyster Crassostrea gigas, 2009

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Main Authors: Havenhand, Jonathan N, Schlegel, Peter
Format: Dataset Open Access
Language:en
Published: PANGAEA 2009
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author Havenhand, Jonathan N
Schlegel, Peter
author_facet Havenhand, Jonathan N
Schlegel, Peter
collection Datos científicos de ciencias marinas y ambientales
contents An increasing number of studies are now reporting the effects of ocean acidification on a broad range of marine species, processes and systems. Many of these are investigating the sensitive early life-history stages that several major reviews have highlighted as being potentially most susceptible to ocean acidification. Nonetheless there remain few investigations of the effects of ocean acidification on the very earliest, and critical, process of fertilization, and still fewer that have investigated levels of ocean acidification relevant for the coming century. Here we report the effects of near-future levels of ocean acidification (~0.35 pH unit change) on sperm swimming speed, sperm motility, and fertilization kinetics in a population of the Pacific oyster Crassostrea gigas from western Sweden. We found no significant effect of ocean acidification - a result that was well-supported by power analysis. Similar findings from Japan suggest that this may be a globally robust result, and we emphasise the need for experiments on multiple populations from throughout a species' range. We also discuss the importance of sound experimental design and power analysis in meaningful interpretation of non-significant results.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_752267
institution PANGAEA
language en
publishDate 2009
publisher PANGAEA
record_format pangaea
spellingShingle Seawater carbonate chemistry and biological processes during experiments with oyster Crassostrea gigas, 2009
Havenhand, Jonathan N
Schlegel, Peter
Alkalinity, total; Animalia; Aragonite saturation state; Benthic animals; Benthos; Bicarbonate ion; Bottles or small containers/Aquaria (<20 L); Calcite saturation state; Calculated; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Coast and continental shelf; Crassostrea gigas; Date; EPOCA; EUR-OCEANS; European network of excellence for Ocean Ecosystems Analysis; European Project on Ocean Acidification; Experimental treatment; Fertilization success rate; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Identification; Laboratory experiment; Microscopy; Mollusca; Motile sperm, Crassostera gigas, speed; Motile sperm, Crassostera gigas, swimming > 15 µm/s; North Atlantic; OA-ICC; Ocean acidification; Ocean Acidification International Coordination Centre; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); pH, NBS scale; pH, total scale; pH meter; Reproduction; Salinity; Salinity, standard deviation; Single species; Sperm concentration, Crassostera gigas; Temperate; Temperature, standard deviation; Temperature, water
An increasing number of studies are now reporting the effects of ocean acidification on a broad range of marine species, processes and systems. Many of these are investigating the sensitive early life-history stages that several major reviews have highlighted as being potentially most susceptible to ocean acidification. Nonetheless there remain few investigations of the effects of ocean acidification on the very earliest, and critical, process of fertilization, and still fewer that have investigated levels of ocean acidification relevant for the coming century. Here we report the effects of near-future levels of ocean acidification (~0.35 pH unit change) on sperm swimming speed, sperm motility, and fertilization kinetics in a population of the Pacific oyster Crassostrea gigas from western Sweden. We found no significant effect of ocean acidification - a result that was well-supported by power analysis. Similar findings from Japan suggest that this may be a globally robust result, and we emphasise the need for experiments on multiple populations from throughout a species' range. We also discuss the importance of sound experimental design and power analysis in meaningful interpretation of non-significant results.
title Seawater carbonate chemistry and biological processes during experiments with oyster Crassostrea gigas, 2009
topic Alkalinity, total; Animalia; Aragonite saturation state; Benthic animals; Benthos; Bicarbonate ion; Bottles or small containers/Aquaria (<20 L); Calcite saturation state; Calculated; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Coast and continental shelf; Crassostrea gigas; Date; EPOCA; EUR-OCEANS; European network of excellence for Ocean Ecosystems Analysis; European Project on Ocean Acidification; Experimental treatment; Fertilization success rate; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Identification; Laboratory experiment; Microscopy; Mollusca; Motile sperm, Crassostera gigas, speed; Motile sperm, Crassostera gigas, swimming > 15 µm/s; North Atlantic; OA-ICC; Ocean acidification; Ocean Acidification International Coordination Centre; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); pH, NBS scale; pH, total scale; pH meter; Reproduction; Salinity; Salinity, standard deviation; Single species; Sperm concentration, Crassostera gigas; Temperate; Temperature, standard deviation; Temperature, water
url https://doi.org/10.1594/PANGAEA.752267