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  • 1
    Publikationsdatum: 2024-07-08
    Schlagwort(e): Abrupt Climate Changes and Environmental Responses; ACER
    Materialart: Dataset
    Format: application/zip, 9.3 MBytes
    Standort Signatur Erwartet Verfügbarkeit
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  • 2
    facet.materialart.
    Unbekannt
    PANGAEA
    In:  Supplement to: Kranz, Sven A; Levitan, Orly; Richter, Klaus-Uwe; Prasil, O; Beran-Frank, Ilana; Rost, Björn (2010): Combined effects of CO2 and light on the N2-fixing cyanobacterium Trichodesmium IMS101: Physiological responses. Plant Physiology, 154, 334-345, https://doi.org/10.1104/pp.110.159145
    Publikationsdatum: 2024-07-08
    Beschreibung: Recent studies on the diazotrophic cyanobacterium Trichodesmium erythraeum(IMS101) showed that increasing CO2 partial pressure (pCO2) enhances N2 fixation and growth. Significant uncertainties remain as to the degree of the sensitivity to pCO2, its modification by other environmental factors, and underlying processes causing these responses. To address these questions, we examined the responses ofTrichodesmium IMS101 grown under a matrix of low and high levels of pCO2 (150 and 900 µatm) and irradiance (50 and 200 µmol photons m-2 s-1). Growth rates as well as cellular carbon and nitrogen contents increased with increasing pCO2 and light levels in the cultures. The pCO2-dependent stimulation in organic carbon and nitrogen production was highest under low light. High pCO2 stimulated rates of N2fixation and prolonged the duration, while high light affected maximum rates only. Gross photosynthesis increased with light but did not change with pCO2. HCO3- was identified as the predominant carbon source taken up in all treatments. Inorganic carbon uptake increased with light, but only gross CO2 uptake was enhanced under high pCO2. A comparison between carbon fluxes in vivo and those derived from 13C fractionation indicates high internal carbon cycling, especially in the low-pCO2treatment under high light. Light-dependent oxygen uptake was only detected underlow pCO2 combined with high light or when low-light-acclimated cells were exposed to high light, indicating that the Mehler reaction functions also as a photoprotective mechanism in Trichodesmium. Our data confirm the pronounced pCO2 effect on N2fixation and growth in Trichodesmium and further show a strong modulation of these effects by light intensity. We attribute these responses to changes in the allocation of photosynthetic energy between carbon acquisition and the assimilation of carbon and nitrogen under elevated pCO2. These findings are supported by a complementarystudy looking at photosynthetic fluorescence parameters of photosystem II, photosynthetic unit stoichiometry (photosystem I:photosystem II), and pool sizes of key proteins in carbon and nitrogen acquisition.
    Schlagwort(e): Alkalinity, Gran titration (Gran, 1950); Alkalinity, total; Alkalinity, total, standard deviation; Aragonite saturation state; Bacteria; Bicarbonate ion; Bicarbonate uptake in chlorophyll, standard deviation; Bicarbonate uptake rate, per chlorophyll a; Biomass/Abundance/Elemental composition; Bottles or small containers/Aquaria (〈20 L); Calcite saturation state; Calculated; Calculated, see reference(s); Calculated using CO2SYS; Calculated using seacarb after Nisumaa et al. (2010); Carbon, inorganic, dissolved; Carbon, inorganic, dissolved, standard deviation; Carbon, organic, particulate, per cell; Carbon, organic, particulate, production per cell; Carbon/Nitrogen ratio; Carbon/Nitrogen ratio, standard deviation; Carbonate ion; Carbonate system computation flag; Carbon dioxide; Carbon dioxide, standard deviation; Carbon dioxide uptake, per chlorophyll, standard deviation; Carbon dioxide uptake rate, per chlorophyll a; Chlorophyll a, standard deviation; Chlorophyll a per cell; Comment; Cyanobacteria; Determined by acetylene reduction assay using a gas chromatograph; EPOCA; EUR-OCEANS; European network of excellence for Ocean Ecosystems Analysis; European Project on Ocean Acidification; Experimental treatment; Fixation of carbon in chlorophyll; Fixation of carbon in chlorophyll, standard deviation; Fugacity of carbon dioxide (water) at sea surface temperature (wet air); Gross oxygen evolution, per chlorophyll a; Gross oxygen evolution, standard deviation; Growth/Morphology; Growth rate; Growth rate, standard deviation; Laboratory experiment; Laboratory strains; Light; Mass spectrometer ANCA-SL 20-20 Europa Scientific; Nitrogen fixation rate, standard deviation; Nitrogen fixation rate per chlorophyll a; Not applicable; OA-ICC; Ocean Acidification International Coordination Centre; Other metabolic rates; Oxygen consumption, standard deviation; Oxygen consumption per chlorophyll a; Partial pressure of carbon dioxide (water) at sea surface temperature (wet air); Particulate organic carbon, production, standard deviation; Particulate organic carbon content per cell, standard deviation; Particulate organic nitrogen per cell; Particulate organic nitrogen per cell, standard deviation; Particulate organic nitrogen production, standard deviation; Particulate organic phosphorus per cell; Particulate organic phosphorus per cell, standard deviation; Pelagos; pH; pH, standard deviation; pH meter (Metrohm electrodes); Phytoplankton; Primary production/Photosynthesis; Production of particulate organic nitrogen; Radiation, photosynthetically active; Respiration; Salinity; see reference(s); Single species; Temperature, water; Time in hours; Trichodesmium sp.
    Materialart: Dataset
    Format: text/tab-separated-values, 1788 data points
    Standort Signatur Erwartet Verfügbarkeit
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  • 3
    facet.materialart.
    Unbekannt
    PANGAEA
    In:  Supplement to: Yang, Yan; Hansson, L; Gattuso, Jean-Pierre (2016): Data compilation on the biological response to ocean acidification: an update. Earth System Science Data, 8(1), 79-87, https://doi.org/10.5194/essd-8-79-2016
    Publikationsdatum: 2024-07-08
    Beschreibung: The exponential growth of studies on the biological response to ocean acidification over the last few decades has generated a large amount of data. To facilitate data comparison, a data compilation hosted at the data publisher PANGAEA was initiated in 2008 and is updated on a regular basis (doi:10.1594/PANGAEA.149999). By January 2015, a total of 581 data sets (over 4 000 000 data points) from 539 papers had been archived. Here we present the developments of this data compilation five years since its first description by Nisumaa et al. (2010). Most of study sites from which data archived are still in the Northern Hemisphere and the number of archived data from studies from the Southern Hemisphere and polar oceans are still relatively low. Data from 60 studies that investigated the response of a mix of organisms or natural communities were all added after 2010, indicating a welcomed shift from the study of individual organisms to communities and ecosystems. The initial imbalance of considerably more data archived on calcification and primary production than on other processes has improved. There is also a clear tendency towards more data archived from multifactorial studies after 2010. For easier and more effective access to ocean acidification data, the ocean acidification community is strongly encouraged to contribute to the data archiving effort, and help develop standard vocabularies describing the variables and define best practices for archiving ocean acidification data.
    Schlagwort(e): Biological process; Country; Experimental treatment; Geographic name/locality; Number; Persistent Identifier; Taxon/taxa; Title
    Materialart: Dataset
    Format: text/tab-separated-values, 4644 data points
    Standort Signatur Erwartet Verfügbarkeit
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  • 4
    Publikationsdatum: 2024-07-07
    Schlagwort(e): 0016PG; 0021PG; 0026PG; 0032PG; 0036PG; 0038PG; 0044PG; 0050PG; 0055PG; 0058PG; 0066PG; 0071PG; 0075PG; 0082PG; 0091PG; 108-658; 130-807A; 138-846; 154-928; 162-980; 162-982; 162-983; 162-984; 177-1088B; 177-1089; 177-1090; 184-1143; 293; 303-U1308; 311; 52-43; 68-502; 90b; Agadir Canyon; ANT-XI/2; Arabian Sea; Atlantic Ocean; BIGSET; Biscaya; Brazil Basin; BT4; CALYPSO; Calypso Corer; Calypso Square Core System; Canarias Sea; Cape Basin; Caribbean Sea/RIDGE; CASQS; CH73-139; CH73-139C; CH7X; CH8X; Chatham Rise; CHN115-70PC; CHN82-24; Comment; COMPCORE; Composite Core; DRILL; Drilling/drill rig; East Atlantic; ELEVATION; EN06601; EN066-16PG; EN066-21PG; EN066-26PG; EN066-32PG; EN066-36PG; EN066-38PG; EN066-44PG; Endeavor; Event label; EW9209-1JPC; EW9504-05PC; Exp303; FR01/97; FR01/97-12; Franklin; GC; GeoB1041; GeoB1101-4; GeoB1112-3; GeoB1117-2; GeoB1118; GeoB1211; GeoB1214-1; GeoB1710-3; GeoB3004-1; GeoB3104-1; GeoB4216-1; GeoB4240-2; GeoB6718-2; GeoB7920-2; GeoB9508-5; GeoB9526-5; GEOFAR; GEOTROPEX 83, NOAMP I; GGC; Giant box corer; Giant gravity corer; Giant piston corer; GIK11944-2; GIK12328-5; GIK12347-2; GIK12379-3; GIK12392-1; GIK13521-1; GIK15612-2; GIK15666-6; GIK15669-1; GIK15672; GIK16004-1; GIK16006-1; GIK16017; GIK16030-1; GIK16402; GIK16415; GIK17049-6; GIK17050-1; GIK17051; GIK17055-1; GIK17961-2; GIK23414-9; GIK23415-9; GIK23416-4; GIK23417-1; GIK23418-8; GIK23419-8; GIK23519-5; GKG; Glomar Challenger; GPC; Gravity corer; Gravity corer (Kiel type); Greenland Sea; Guinea Basin; Gulf of Aden; Hakurei-Maru No.2 (1980); HM52-43; IMAGES I; IMAGES II; IMAGES III - IPHIS; IMAGES V; IMAGES VII - WEPAMA; IMAGES XV - Pachiderme; Integrated Ocean Drilling Program / International Ocean Discovery Program; IODP; Jean Charcot; Joides Resolution; JOPSII-6; JPC; Jumbo Piston Core; KAL; Kasten corer; KF13; KL-74, AS-12; KN11002; KN159-5; Knorr; KNR110-50; KNR110-55; KNR110-58; KNR110-66; KNR110-71; KNR110-75; KNR110-82; KNR110-91; KNR159-17; KNR159-20; KNR159-33; KNR159-36; KNR159-42; KNR159-5; KNR159-5-125GGC; KNR159-5 17JPC; KNR159-5-22GGC; KNR159-5 30GGC; KNR159-5-30GGC; KNR159-5-33GGC; KNR159-5-36GGC; KNR159-5-63GGC; KNR159-5-78GGC; KNR159-5 90GGC; KNR159-63; KNR159-90; KOL; LATITUDE; Leg108; Leg130; Leg138; Leg154; Leg162; Leg177; Leg184; Leg68; Le Noroit; Le Suroît; LONGITUDE; M11/1; M12/1; M12392-1; M17/2; M20/2; M23; M23_099; M23414; M25; M31/3; M31/3-107_GC; M35/1; M35003-4; M37/1; M39; M53; M53_166; M53_169; M53_172-1; M53/1; M57; M6/6; M60; M65; M65/1; M9/4; Marion Dufresne (1995); MD012378; MD01-2378; MD07-3076; MD07-3076Q; MD101; MD105; MD106; MD114; MD122; MD159; MD952039; MD95-2039; MD952040; MD95-2040; MD96-2080; MD962080, ABS; MD972120; MD97-2120; MD972151; MD97-2151; MD99-2334; Meteor (1964); Meteor (1986); MONITOR MONSUN; N414NGC102; NA87-22; Namibia continental slope; NE-Brazilian continental margin; NH95-1; NH95-1_N414; Nordost-Atlantik-Expedition 1971; North Atlantic; North Atlantic Climate 1; Northeast Atlantic; Northeast Pacific; northern North Atlantic; Norwegian Sea; OCE205-103GGC; OCE205-2-103GGC; Ocean and sea region; off West Africa; Orgon4-KS8; PALEOCINAT; PC; Persistent Identifier; Piston corer; Piston corer (Kiel type); Polarstern; Porcupine Seabight; Porto Seamount; POS210/2; POS265; POS478-2; Poseidon; PS2498-1; PS28; PS28/304; RC13; RC13-110; RC13-114; RC13-228; RC16; RC16-119; RC16-84; Reference/source; Robert Conrad; Sample code/label; SL; SO42; SO42-74KL; SO95; Sonne; South Atlantic; South Atlantic Ocean; South China Sea; Southern Agulhas Bank; South Pacific Ocean; Southwest Pacific; SPC; Sphincter corer; SU90-03; SU90-39; SUBTROPEX 82; Timor Sea; Uniform resource locator/link to reference; V19; V19-27; V22; V22-197; V23; V23-81; V24; V24-109; V24-253; V25; V25-59; V28; V28-127; V28-14; V29; V29-135; V29-202; V30; V30-40; V30-49; Vema; Vema Channel; Victor Hensen; Walvis Ridge; West equatorial Pacific Ocean; Western Atlantic
    Materialart: Dataset
    Format: text/tab-separated-values, 469 data points
    Standort Signatur Erwartet Verfügbarkeit
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  • 5
    Publikationsdatum: 2024-07-06
    Schlagwort(e): 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
    Materialart: Dataset
    Format: text/tab-separated-values, 224 data points
    Standort Signatur Erwartet Verfügbarkeit
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  • 6
    Publikationsdatum: 2024-07-06
    Schlagwort(e): 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
    Materialart: Dataset
    Format: text/tab-separated-values, 1205 data points
    Standort Signatur Erwartet Verfügbarkeit
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  • 7
    Publikationsdatum: 2024-07-06
    Schlagwort(e): 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
    Materialart: Dataset
    Format: text/tab-separated-values, 75 data points
    Standort Signatur Erwartet Verfügbarkeit
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  • 8
    Publikationsdatum: 2024-07-06
    Schlagwort(e): 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
    Materialart: Dataset
    Format: text/tab-separated-values, 233 data points
    Standort Signatur Erwartet Verfügbarkeit
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  • 9
    Publikationsdatum: 2024-07-06
    Schlagwort(e): 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
    Materialart: Dataset
    Format: text/tab-separated-values, 2882 data points
    Standort Signatur Erwartet Verfügbarkeit
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  • 10
    facet.materialart.
    Unbekannt
    PANGAEA
    Publikationsdatum: 2024-07-06
    Schlagwort(e): 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
    Materialart: Dataset
    Format: text/tab-separated-values, 1359 data points
    Standort Signatur Erwartet Verfügbarkeit
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