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  • Cell Press  (53,728)
  • PANGAEA  (52,493)
  • 2010-2014  (97,975)
  • 1980-1984  (8,246)
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  • 1
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Johnson, Maggie Dorothy; Moriarty, Vincent; Carpenter, Robert C (2014): Acclimatization of the Crustose Coralline Alga Porolithon onkodes to Variable pCO2. PLoS ONE, 9(2), e87678, https://doi.org/10.1371/journal.pone.0087678
    Publication Date: 2024-07-06
    Description: Ocean acidification (OA) has important implications for the persistence of coral reef ecosystems, due to potentially negative effects on biomineralization. Many coral reefs are dynamic with respect to carbonate chemistry, and experience fluctuations in pCO2 that exceed OA projections for the near future. To understand the influence of dynamic pCO2 on an important reef calcifier, we tested the response of the crustose coralline alga Porolithon onkodes to oscillating pCO2. Individuals were exposed to ambient (400 µatm), high (660 µatm), or variable pCO2 (oscillating between 400/660 µatm) treatments for 14 days. To explore the potential for coralline acclimatization, we collected individuals from low and high pCO2 variability sites (upstream and downstream respectively) on a back reef characterized by unidirectional water flow in Moorea, French Polynesia. We quantified the effects of treatment on algal calcification by measuring the change in buoyant weight, and on algal metabolism by conducting sealed incubations to measure rates of photosynthesis and respiration. Net photosynthesis was higher in the ambient treatment than the variable treatment, regardless of habitat origin, and there was no effect on respiration or gross photosynthesis. Exposure to high pCO2 decreased P. onkodes calcification by 〉70%, regardless of the original habitat. In the variable treatment, corallines from the high variability habitat calcified 42% more than corallines from the low variability habitat. The significance of the original habitat for the coralline calcification response to variable, high pCO2 indicates that individuals existing in dynamic pCO2 habitats may be acclimatized to OA within the scope of in situ variability. These results highlight the importance of accounting for natural pCO2 variability in OA manipulations, and provide insight into the potential for plasticity in habitat and species-specific responses to changing ocean chemistry.
    Keywords: Alkalinity, total; Alkalinity, total, standard error; Aragonite saturation state; Aragonite saturation state, standard error; Benthos; Bicarbonate ion; Calcification/Dissolution; Calcification rate, standard error; Calcification rate of calcium carbonate; Calcite saturation state; Calcite saturation state, standard error; Calculated using CO2SYS; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Coast and continental shelf; Containers and aquaria (20-1000 L or 〈 1 m**2); Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Gross photosynthesis rate, oxygen; Gross photosynthesis rate, oxygen, standard error; Irradiance; Irradiance, standard error; Laboratory experiment; Macroalgae; Net photosynthesis rate, oxygen; Net photosynthesis rate, oxygen, standard error; OA-ICC; Ocean Acidification International Coordination Centre; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Partial pressure of carbon dioxide (water) at sea surface temperature (wet air), standard error; pH; pH, standard error; Plantae; Porolithon onkodes; Potentiometric titration; Primary production/Photosynthesis; Respiration; Respiration rate, oxygen; Respiration rate, oxygen, standard error; Rhodophyta; Salinity; Salinity, standard error; Single species; South Pacific; Species; Spectrophotometric; Temperature, water; Temperature, water, standard error; Treatment; Tropical
    Type: Dataset
    Format: text/tab-separated-values, 264 data points
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  • 2
    Publication Date: 2024-07-06
    Description: The Tara Oceans Expedition (2009-2013) was a global survey of ocean ecosystems aboard the Sailing Vessel Tara. It carried out extensive measurements of evironmental conditions and collected plankton (viruses, bacteria, protists and metazoans) for later analysis using modern sequencing and state-of-the-art imaging technologies. Tara Oceans Data are particularly suited to study the genetic, morphological and functional diversity of plankton. The present data set includes properties of seawater, particulate matter and dissolved matter that were measured from discrete water samples collected with Niskin bottles during the 2009-2013 Tara Oceans expedition. Properties include pigment concentrations from HPLC analysis (10 depths per vertical profile, 25 pigments per depth), the carbonate system (Surface and 400m; pH (total scale), CO2, pCO2, fCO2, HCO3, CO3, Total alkalinity, Total carbon, OmegaAragonite, OmegaCalcite, and dosage Flags), nutrients (10 depths per vertical profile; NO2, PO4, N02/NO3, SI, quality Flags), DOC, CDOM, and dissolved oxygen isotopes. The Service National d'Analyse des Paramètres Océaniques du CO2, at the Université Pierre et Marie Curie, determined CT and AT potentiometrically. More than 200 vertical profiles of these properties were made across the world ocean. DOC, CDOM and dissolved oxygen isotopes are available only for the Arctic Ocean and Arctic Seas (2013).
    Keywords: [day] [water layer with no specific feature]; [RVSS]; 19-Butanoyloxyfucoxanthin; 19-Hexanoyloxyfucoxanthin; Alloxanthin; Bacteriochlorophyll a; Basis of event; Bottle number; Calculated; Campaign of event; Carotene; Chlorophyll a; Chlorophyll a, total; Chlorophyll b; Chlorophyll b + divinyl chlorophyll b; Chlorophyll c1+c2; Chlorophyll c3; Chlorophyllide a; Comment of event; Conductivity; CTD, Sea-Bird, SBE 911; CTD, Sea-Bird SBE 911plus; Date/Time of event; Density, sigma-theta (0); DEPTH, water; Determination of nitrite (Bendschneider & Robinson, 1952, J Mar Res, 11:87-96); Determination of phosphate (Murphy & Riley, 1962); Diadinoxanthin; Diatoxanthin; Dissolved silica, colorimetric (Mullin & Riley, 1955); Divinyl chlorophyll a; Divinyl chlorophyll b; Event label; File name; Fondation Tara Expeditions; FondTara; Fucoxanthin; Latitude of event; Longitude of event; Lorient to Tromsø, Stations: TARA_155-166; Lutein; Method/Device of event; Neoxanthin; Nitrate and Nitrite; Nitrite; Optional event label; Peridinin; Phaeophorbide a; Phaeophytin a; Phosphate; Prasinoxanthin; Pressure, water; Quality flag; Rosette Vertical Sampling System; Salinity; Silicate; Station label; SV Tara; TARA_20130519Z; TARA_20130605T1341Z_159_EVENT_CAST; Tara_Oceans_2009-2013; Tara Oceans Expedition; Temperature, water; Temperature, water, potential; URI of event; Violaxanthin; Zeaxanthin
    Type: Dataset
    Format: text/tab-separated-values, 123 data points
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  • 3
    Publication Date: 2024-07-06
    Keywords: Calculated after Luo et al. (2012); CTD/Rosette; CTD-RO; Date/Time of event; DEPTH, water; Diazotrophs, total biomass as carbon; Epifluorescence microscopy; Event label; K10/2008-09-08; K14/2004-10-18; K14/2005-04-29; K14/2005-08-15; K14/2006-06-24; K14/2006-11-08; K14/2006-12-20; K9/2007-04-23; K9/2007-07-09; K9/2007-12-13; K9/2008-08-06; K9/2009-05-19; Latitude of event; Longitude of event; MAREDAT_Diazotrophs_Collection; Nitrate; Philippine Sea; Phosphate; S3/2004-04-07; S3/2004-05-05; S3/2005-03-31; S3/2005-11-10; S3/2005-12-26; S3/2006-07-03; S3/2006-10-21; S3/2007-01-15; South China Sea; Trichodesmium, biomass as carbon; Trichodesmium, carbon per trichome; Trichodesmium abundance, total
    Type: Dataset
    Format: text/tab-separated-values, 120 data points
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  • 4
    Publication Date: 2024-07-06
    Keywords: Calculated after Luo et al. (2012); Date/Time of event; DEPTH, water; Diazotrophs, total biomass as carbon; Event label; Heterocyst, biomass; Latitude of event; Light microscope; Longitude of event; MAREDAT_Diazotrophs_Collection; MR04-07_01; MR04-07_02; MR04-07_03; MR04-07_04; MR04-07_05; MR04-07_06; MR04-07_07; MR04-07_08; MR04-07_09; MR05-02_01; MR05-02_02; MR05-02_03; MR05-02_04; MR05-02_05; MR05-02_06; MR05-02_07; MR05-02_08; MR05-02_09; MR05-02_10; MR05-02_11; MR05-02_12; MR05-02_13; MR05-02_14; MR05-02_15; MR05-02_16; MR05-02_17; MR05-02_18; MR05-02_19; MR05-02_20; MR05-02_21; North Atlantic; Richelia, associated species; Richelia, carbon per cell; Richelia abundance, cells; Trichodesmium, biomass as carbon; Trichodesmium, carbon per trichome; Trichodesmium abundance, total
    Type: Dataset
    Format: text/tab-separated-values, 224 data points
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  • 5
    Publication Date: 2024-07-06
    Keywords: Atlantic; Calculated after Luo et al. (2012); Chlorophyll total; Date/Time of event; DEPTH, water; Diazotrophs, total biomass as carbon; Event label; Hesperides_01a; Hesperides_01b; Hesperides_01c; Hesperides_02a; Hesperides_02b; Hesperides_02c; Hesperides_02d; Hesperides_02e; Hesperides_03a; Hesperides_03b; Hesperides_03c; Hesperides_03d; Hesperides_04a; Hesperides_04b; Hesperides_04c; Hesperides_05a; Hesperides_05b; Hesperides_05c; Hesperides_05d; Hesperides_05e; Hesperides_05f; Hesperides_05g; Hesperides_06a; Hesperides_06b; Hesperides_06c; Hesperides_06d; Hesperides_07a; Hesperides_07b; Hesperides_07c; Hesperides_07d; Hesperides_07e; Hesperides_07f; Hesperides_08a; Hesperides_08b; Hesperides_08c; Hesperides_08d; Hesperides_08e; Hesperides_08f; Hesperides_09a; Hesperides_09b; Hesperides_09c; Hesperides_09d; Hesperides_09e; Hesperides_09f; Hesperides_10a; Hesperides_10b; Hesperides_10c; Hesperides_10d; Hesperides_10e; Hesperides_11a; Hesperides_11b; Hesperides_11c; Hesperides_11d; Hesperides_11e; Hesperides_11f; Hesperides_12a; Hesperides_12b; Hesperides_12c; Hesperides_12d; Hesperides_12e; Hesperides_13a; Hesperides_13b; Hesperides_13c; Hesperides_13d; Hesperides_13e; Hesperides_13f; Hesperides_14a; Hesperides_14b; Hesperides_14c; Hesperides_14d; Hesperides_14e; Hesperides_14f; Hesperides_15a; Hesperides_15b; Hesperides_15c; Hesperides_15d; Hesperides_16a; Hesperides_16b; Hesperides_16c; Hesperides_16d; Hesperides_16e; Hesperides_17a; Hesperides_17b; Hesperides_17c; Hesperides_18a; Hesperides_18b; Hesperides_18c; Hesperides_18d; Hesperides_18e; Hesperides_19a; Hesperides_19b; Hesperides_19c; Hesperides_20a; Hesperides_20b; Hesperides_21a; Hesperides_21b; Hesperides_22a; Hesperides_23a; Hesperides_23b; Hesperides_23c; Hesperides_23d; Hesperides_24a; Hesperides_24b; Hesperides_24c; Hesperides_24d; Hesperides_25a; Hesperides_25b; Hesperides_25c; Hesperides_25d; Hesperides_26a; Hesperides_26b; Hesperides_26c; Hesperides_26d; Hesperides_27a; Hesperides_27b; Hesperides_27c; Hesperides_27d; Hesperides_28a; Hesperides_28b; Hesperides_28c; Hesperides_28d; Hesperides_29a; Hesperides_29b; Hesperides_29c; Hesperides_29d; Hesperides_29e; Hesperides_29f; Hesperides_30a; Hesperides_30b; Hesperides_30c; Hesperides_30d; Hesperides_30e; Hesperides_30f; Hesperides_31a; Hesperides_31b; Hesperides_31c; Hesperides_31d; Hesperides_31e; Hesperides_31f; Hesperides_32a; Hesperides_32b; Hesperides_32c; Hesperides_32d; Hesperides_32e; Hesperides_32f; Hesperides_33a; Hesperides_33b; Hesperides_33c; Hesperides_33d; Hesperides_33e; Hesperides_33f; Hesperides_34a; Hesperides_34b; Hesperides_34c; Hesperides_34d; Hesperides_34e; Hesperides_34f; Hesperides_35a; Hesperides_35b; Hesperides_35c; Hesperides_35d; Hesperides_35e; Hesperides_35f; Hesperides_36a; Hesperides_36b; Hesperides_36c; Hesperides_36d; Hesperides_36e; Hesperides_36f; Hesperides_37a; Hesperides_37b; Hesperides_37c; Hesperides_37d; Hesperides_37e; Hesperides_37f; Hesperides_38a; Hesperides_38b; Hesperides_38c; Hesperides_38d; Hesperides_38e; Hesperides_38f; Hesperides_39a; Hesperides_39b; Hesperides_39c; Hesperides_39d; Hesperides_39e; Hesperides_40a; Hesperides_40b; Hesperides_40c; Hesperides_40d; Hesperides_40e; Hesperides_40f; Hesperides_41a; Hesperides_41b; Hesperides_41c; Hesperides_41d; Hesperides_41e; Hesperides_41f; Hesperides_42a; Hesperides_42b; Hesperides_42c; Latitude of event; Light microscope; Longitude of event; MAREDAT_Diazotrophs_Collection; Nitrate; Phosphate; Salinity; Temperature, water; Trichodesmium, biomass as carbon; Trichodesmium, carbon per trichome; Trichodesmium abundance, free trichomes; Trichodesmium abundance, total
    Type: Dataset
    Format: text/tab-separated-values, 1205 data points
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  • 6
    Publication Date: 2024-07-06
    Keywords: Calculated after Luo et al. (2012); Date/Time of event; DEPTH, water; Diazotrophs, total biomass as carbon; Event label; Latitude of event; Light microscope; Longitude of event; MAREDAT_Diazotrophs_Collection; Sargasso1960-01-15; Sargasso1960-02-15; Sargasso1960-03-15; Sargasso1960-04-15; Sargasso1960-05-15; Sargasso1960-06-15; Sargasso1960-07-10; Sargasso1960-07-11; Sargasso1960-07-27; Sargasso1960-08-12; Sargasso1960-08-29; Sargasso1960-09-15; Sargasso1960-10-25; Sargasso1960-11-15; Sargasso1960-12-15; Sargasso Sea; Trichodesmium, biomass as carbon; Trichodesmium, carbon per trichome; Trichodesmium abundance, colonies; Trichodesmium abundance, total
    Type: Dataset
    Format: text/tab-separated-values, 75 data points
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  • 7
    Publication Date: 2024-07-06
    Keywords: A1/1992-06-18; A1/1992-06-19; A1/1992-06-20; A1/1992-06-21; A1/1992-06-22; A1/1992-06-23; A1/1992-06-24; A1/1992-06-25; A1/1992-06-26; A1/1992-06-28; A1/1992-06-29; A1/1992-06-30; A1/1992-07-01; A1/1992-07-02; A1/1992-07-03; A1/1992-07-04; A1/1992-07-05; A1/1992-07-07; A2/19921118; A2/19921119; A2/19921120; A2/19921121; A2/19921122; A2/19921125; A2/19921126; A2/1992-11-27; A2/19921128; A2/19921129; A2/19921130; A2/19921202; A2/19921203; A2/19921204; A2/19921206; Calculated after Luo et al. (2012); Comment; Date/Time of event; DEPTH, water; Diazotrophs, total biomass as carbon; Event label; GOFLO; Go-Flo bottles; Indian Ocean; Latitude of event; Light microscope; Longitude of event; MAREDAT_Diazotrophs_Collection; Sample comment; Trichodesmium, biomass as carbon; Trichodesmium, carbon per trichome; Trichodesmium abundance, colonies; Trichodesmium abundance, total
    Type: Dataset
    Format: text/tab-separated-values, 233 data points
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  • 8
    Publication Date: 2024-07-06
    Keywords: Calculated after Luo et al. (2012); CTD, Seabird; CTD-R; Date/Time of event; DEPTH, water; Diazotrophs, total biomass as carbon; Event label; Heterocyst, biomass; Latitude of event; Light microscope; Longitude of event; MAREDAT_Diazotrophs_Collection; Meville2002-06-24; Meville2002-06-26; Meville2002-06-28; Meville2002-06-30; Meville2002-07-02; Meville2002-07-03; Meville2002-07-04; Meville2002-07-05; Meville2002-07-06; Meville2002-07-07; Meville2002-07-08; Meville2002-07-09; Meville2002-07-11; Meville2002-07-12; Meville2002-07-13; NewHorizon2003-08-22; NewHorizon2003-08-25; NewHorizon2003-08-26; NewHorizon2003-08-27; NewHorizon2003-08-28; NewHorizon2003-08-30; NewHorizon2003-08-31; NewHorizon2003-09-01; NewHorizon2003-09-03; NewHorizon2003-09-04; NewHorizon2003-09-05; NewHorizon2003-09-07; NewHorizon2003-09-08; NewHorizon2003-09-09; NewHorizon2003-09-11; NewHorizon2003-09-12; NewHorizon2003-09-13; NewHorizon2003-09-14; Nitrate; North Pacific; Phosphate; Richelia, associated species; Richelia, carbon per cell; Richelia abundance, cells; Salinity; Temperature, water; Trichodesmium, biomass as carbon; Trichodesmium, carbon per trichome; Trichodesmium abundance, total
    Type: Dataset
    Format: text/tab-separated-values, 2882 data points
    Location Call Number Expected Availability
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  • 9
    Publication Date: 2024-07-06
    Keywords: Calculated after Luo et al. (2012); Calothrix, associated species; Calothrix, carbon per cell; Calothrix abundance, cells; Comment; Date/Time of event; DEPTH, water; Diazotrophs, total biomass as carbon; Event label; Heterocyst, biomass; Latitude of event; Longitude of event; MAREDAT_Diazotrophs_Collection; Microscopy (epifluorescence); Richelia, associated species; Richelia, carbon per cell; Richelia abundance, cells; Salinity; Temperature, water; Trichodesmium, biomass as carbon; Trichodesmium, carbon per trichome; Trichodesmium abundance, total; Villareal2008-07-04; Villareal2008-07-05; Villareal2008-07-07; Villareal2008-07-08; Villareal2008-07-09; Villareal2008-07-10; Villareal2008-07-12; Villareal2008-07-13; Villareal2008-07-15; Villareal2009-07-31; Villareal2009-08-02; Villareal2009-08-03; Villareal2009-08-04; Villareal2009-08-05; Villareal2009-08-09; Villareal2009-08-13_1; Villareal2009-08-13_2; Villareal2011-07-05; Villareal2011-07-06; Villareal2011-07-07; Villareal2011-07-08; Villareal2011-07-09_1; Villareal2011-07-09_2; Villareal2011-07-10; Villareal2011-07-11; Villareal2011-07-12_1; Villareal2011-07-12_2; Villareal2011-07-16; Villareal2011-07-17; Villareal2011-07-18; Villareal2011-07-19_1; Villareal2011-07-19_2; Villareal2011-07-20_1; Villareal2011-07-20_2; Villareal2011-07-21_1; Villareal2011-07-21_2; Villareal2011-07-22_1; Villareal2011-07-22_2; Villareal2011-07-22_3; Villareal2011-07-23; Villareal2011-07-24; Villareal2011-07-25_1; Villareal2011-07-25_2; Villareal2011-07-25_3; Villareal2011-07-26_1; Villareal2011-07-26_2; Villareal2011-07-27
    Type: Dataset
    Format: text/tab-separated-values, 1359 data points
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  • 10
    Publication Date: 2024-07-06
    Keywords: Calculated after Luo et al. (2012); Date/Time of event; DEPTH, water; Diazotrophs, total biomass as carbon; Event label; Heterocyst, biomass; Latitude of event; Light microscope; Longitude of event; MAREDAT_Diazotrophs_Collection; Richelia, associated species; Richelia, carbon per cell; Richelia abundance, cells; Trichodesmium, biomass as carbon; Trichodesmium, carbon per trichome; Trichodesmium abundance, colonies; Trichodesmium abundance, free trichomes; Trichodesmium abundance, total; White2005-07-29; White2005-08-03; White2008-07-14; White2008-07-16; White2008-07-17_1; White2008-07-17_2; White2008-07-18; White2008-07-20; White2008-07-22; White2008-07-25; White2008-07-26
    Type: Dataset
    Format: text/tab-separated-values, 486 data points
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