Direct linkage between dimethyl sulfide production and microzooplankton grazing, resulting from prey composition change under high partial pressure of carbon dioxide conditions
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| Main Authors: | , , , , , , , , , , , , |
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| Format: | Dataset Open Access |
| Language: | en |
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PANGAEA
2014
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| _version_ | 1867168153224609792 |
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| author | Park, K T Lee, Kitack Shin, Kyoungsoon Yang, Eun Jin Hyun, Bonggil Kim, Ja-Myung Noh, Jae Hoon Kim, Miok Kong, Bokyung Choi, Dong Han Choi, Su-Jin Jang, Pung-Guk Jeong, Hae Jin |
| author_facet | Park, K T Lee, Kitack Shin, Kyoungsoon Yang, Eun Jin Hyun, Bonggil Kim, Ja-Myung Noh, Jae Hoon Kim, Miok Kong, Bokyung Choi, Dong Han Choi, Su-Jin Jang, Pung-Guk Jeong, Hae Jin |
| collection | Datos científicos de ciencias marinas y ambientales |
| contents | Oceanic dimethyl sulfide (DMS) is the enzymatic cleavage product of the algal metabolite dimethylsulfoniopropionate (DMSP) and is the most abundant form of sulfur released into the atmosphere. To investigate the effects of two emerging environmental threats (ocean acidification and warming) on marine DMS production, we performed a large-scale perturbation experiment in a coastal environment. At both ambient temperature and 2 °C warmer, an increase in partial pressure of carbon dioxide (pCO2) in seawater (160-830 ppmv pCO2) favored the growth of large diatoms, which outcompeted other phytoplankton species in a natural phytoplankton assemblage and reduced the growth rate of smaller, DMSP-rich phototrophic dinoflagellates. This decreased the grazing rate of heterotrophic dinoflagellates (ubiquitous micrograzers), resulting in reduced DMS production via grazing activity. Both the magnitude and sign of the effect of pCO2 on possible future oceanic DMS production were strongly linked to pCO2-induced alterations to the phytoplankton community and the cellular DMSP content of the dominant species and its association with micrograzers. |
| format | Dataset Open Access |
| id | pangaea_https___doi_org_10_1594_PANGAEA_834079 |
| institution | PANGAEA |
| language | en |
| publishDate | 2014 |
| publisher | PANGAEA |
| record_format | pangaea |
| spellingShingle | Direct linkage between dimethyl sulfide production and microzooplankton grazing, resulting from prey composition change under high partial pressure of carbon dioxide conditions Park, K T Lee, Kitack Shin, Kyoungsoon Yang, Eun Jin Hyun, Bonggil Kim, Ja-Myung Noh, Jae Hoon Kim, Miok Kong, Bokyung Choi, Dong Han Choi, Su-Jin Jang, Pung-Guk Jeong, Hae Jin 19-Hexanoyloxyfucoxanthin; Alexandrium sp.; Alkalinity, total; Alloxanthin; Ammonia; Aragonite saturation state; Behaviour; Bicarbonate ion; Biomass; Calcite saturation state; Calculated; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbon, organic, dissolved; Carbon, organic, particulate; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Cell density; Cerataulina pelagica; Chlorophyll a; Chlorophyll b; Coast and continental shelf; Community composition and diversity; Date; Dimethyl sulfide; Dimethylsulfoniopropionate, particulate; Dimethylsulfoniopropionate lyase activity; Dimethylsulfoniopropionate lyase activity, standard deviation; Entire community; EXP; Experiment; Field experiment; Fucoxanthin; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Grazing rate; Grazing rate, standard error; Identification; Incubation duration; Jangmok; Mesocosm or benthocosm; Nitrate and Nitrite; North Pacific; OA-ICC; Ocean acidification; Ocean Acidification International Coordination Centre; Other metabolic rates; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Pelagos; Peridinin; pH, total scale; Phosphate; Primary production/Photosynthesis; Salinity; Silicate; Species; Temperate; Temperature; Temperature, water; Treatment; Zeaxanthin Oceanic dimethyl sulfide (DMS) is the enzymatic cleavage product of the algal metabolite dimethylsulfoniopropionate (DMSP) and is the most abundant form of sulfur released into the atmosphere. To investigate the effects of two emerging environmental threats (ocean acidification and warming) on marine DMS production, we performed a large-scale perturbation experiment in a coastal environment. At both ambient temperature and 2 °C warmer, an increase in partial pressure of carbon dioxide (pCO2) in seawater (160-830 ppmv pCO2) favored the growth of large diatoms, which outcompeted other phytoplankton species in a natural phytoplankton assemblage and reduced the growth rate of smaller, DMSP-rich phototrophic dinoflagellates. This decreased the grazing rate of heterotrophic dinoflagellates (ubiquitous micrograzers), resulting in reduced DMS production via grazing activity. Both the magnitude and sign of the effect of pCO2 on possible future oceanic DMS production were strongly linked to pCO2-induced alterations to the phytoplankton community and the cellular DMSP content of the dominant species and its association with micrograzers. |
| title | Direct linkage between dimethyl sulfide production and microzooplankton grazing, resulting from prey composition change under high partial pressure of carbon dioxide conditions |
| topic | 19-Hexanoyloxyfucoxanthin; Alexandrium sp.; Alkalinity, total; Alloxanthin; Ammonia; Aragonite saturation state; Behaviour; Bicarbonate ion; Biomass; Calcite saturation state; Calculated; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbon, organic, dissolved; Carbon, organic, particulate; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Cell density; Cerataulina pelagica; Chlorophyll a; Chlorophyll b; Coast and continental shelf; Community composition and diversity; Date; Dimethyl sulfide; Dimethylsulfoniopropionate, particulate; Dimethylsulfoniopropionate lyase activity; Dimethylsulfoniopropionate lyase activity, standard deviation; Entire community; EXP; Experiment; Field experiment; Fucoxanthin; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Grazing rate; Grazing rate, standard error; Identification; Incubation duration; Jangmok; Mesocosm or benthocosm; Nitrate and Nitrite; North Pacific; OA-ICC; Ocean acidification; Ocean Acidification International Coordination Centre; Other metabolic rates; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Pelagos; Peridinin; pH, total scale; Phosphate; Primary production/Photosynthesis; Salinity; Silicate; Species; Temperate; Temperature; Temperature, water; Treatment; Zeaxanthin |
| url | https://doi.org/10.1594/PANGAEA.834079 |