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| griddap | Subset | tabledap | Make A Graph | wms | files | Accessible | Title | Summary | FGDC | ISO 19115 | Info | Background Info | RSS | Institution | Dataset ID | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_780248 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_780248.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_780248/ | public | [AT39-01 CathodicEET CyclicVoltametry] - Cyclic voltametry data from cathodic poised potential experiments with subsurface crustal samples from CORK borehole observatories at North Pond on the Mid-Atlantic Ridge during R/V Atlantis cruise AT39-01 (Collaborative Research: Completing North Pond Borehole Experiments to Elucidate the Hydrology of Young, Slow-Spread Crust) | Cyclic voltametry data from cathodic poised potential experiments with subsurface crustal samples from CORK borehole observatories at North Pond on the Mid-Atlantic Ridge during R/V Atlantis cruise AT39-01.\n\ncdm_data_type = Other\nVARIABLES:\nvoltage (voltage (V))\nCH1_a (amps (A))\nCH1_b (amps (A))\nCH1_c (amps (A))\nCH2_a (amps (A))\nCH2_b (amps (A))\nCH2_c (amps (A))\nCH3_a (amps (A))\nCH3_b (amps (A))\nCH3_c (amps (A))\nCH4_a (amps (A))\nCH4_b (amps (A))\nCH4_c (amps (A))\nCH1_average (microamps per square centimeter (A cm-2))\nCH2_average (microamps per square centimeter (A cm-2))\nCH3_average (microamps per square centimeter (A cm-2))\nCH4_average (microamps per square centimeter (A cm-2))\nExperimentID (Experiment ID, unitless)\nCondition (unitless)\nFLOCSdeployDate (FLOCSdeploy Date, unitless)\nFLOCSdepth (meters below seafloor (m))\nFLOCSrecoverDate (FLOCSrecover Date, unitless)\nFluidcollectionCruise (Fluidcollection Cruise, unitless)\nFluidcollectionDate (Fluidcollection Date, unitless)\nlatitude (degrees_north)\nlongitude (degrees_east)\nWaterDepth (Water Depth, meters (m))\n | https://erddap.bco-dmo.org/erddap/metadata/fgdc/xml/bcodmo_dataset_780248_fgdc.xml | https://erddap.bco-dmo.org/erddap/metadata/iso19115/xml/bcodmo_dataset_780248_iso19115.xml | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_780248/index.htmlTable | https://www.bco-dmo.org/dataset/780248
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_780248.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_780248&showErrors=false&email= | BCO-DMO | bcodmo_dataset_780248 | |||
| log in | [CLA Phosphate Threshold Data] - Measurements of C–P lyase phosphate thresholds in Stutzerimonas frequens cultures (North Pacific Methane Project) (Collaborative Research: NSF OCE-BSF: Coupling organic nutrient cycling to methane production in the oligotrophic North Pacific Ocean) | This dataset contains results from an experiment investigating the phosphate concentration threshold for C-P lyase activity in cultures of Stutzerimonas frequens. The dataset includes measurements of total dissolved phosphorus (TDP), soluble reactive phosphorus (SRP), and dissolved organic phosphorus (DOP) in the culture medium at the end of incubation. Additional parameters include cell concentrations from cultures, methane produced by the cultures during the experiment, and rates of C-P lyase activity (CLA).\n\nTDP, SRP, and DOP were measured using standard colorimetric methods. Cell concentrations were determined by flow cytometry. Methane concentrations and δ¹³C values were measured with a Picarro gas analyzer, and CLA was quantified using a fluorescently labeled phosphonate probe.\n\nThese data demonstrate that C-P lyase activity is regulated by dissolved phosphate concentrations and that S. frequens upregulates C-P lyase genes when phosphate concentrations drop below 90 nM. The cultures were grown by Dr. Oscar Sosa, and the samples were analyzed by Dr. Benjamin Granzow.\n\ncdm_data_type = Other\nVARIABLES:\nBottle (unitless)\nCondition (unitless)\nType (unitless)\nInitial_PO4 (nM)\nResidual_PO4 (nM)\nPO4_Uptake (nM)\nInitial_TDP (nM)\nTDP (nM)\nDOP (nM)\ncells_ml_avg (cells/mL)\ncells_ml_sd (cells/mL)\ncells_ml_cv (cells/mL)\nCH4 (nM)\ndelta13_CH4 (per_mille)\nnDPPh_Concentration (pM)\nnDP_Concentration (pM)\n | BCO-DMO | bcodmo_dataset_984527_v1 | ||||||||||||
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_911212_v1 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_911212_v1.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_911212_v1/ | public | [Epiphytic bacteria methane production data] - MPn-derived methane production by epiphytic bacteria on pelagic Sargassum seaweed from 2017-2019 (Cyanobacteria Hydrocarbons project) (Collaborative Research: Do Cyanobacteria Drive Marine Hydrocarbon Biogeochemistry?) | The essential nutrient phosphorus is biologically scarce in the Sargasso Sea, yet the pelagic macroalgae Sargassum, for which this area of the North Atlantic Ocean is named, thrives. We tested the hypothesis that Sargassum holobionts utilize methylphosphonate (MPn) as an alternative source of phosphorus, finding lysis liberated phosphonate-derived methane. The observed activity occurred at concentrations as low as 35 nM MPn and was inhibited by antibiotics, implicating microbial members of the holobiont capable of MPn lysis at realistic environmental concentrations. A survey of macroalgal species inhabiting the Sargasso Sea found a ubiquitous capacity for MPn lysis; such capacity was absent in species inhabiting phosphorus-replete waters of the California Current, pointing to phosphorous limitation as a selective pressure. These results suggest algal holobionts may conditionally acquire phosphorus from phosphonates while simultaneously serving as a source of atmospheric methane.\n\ncdm_data_type = Other\nVARIABLES:\nOrder (unitless)\nDate (unitless)\nTrial (unitless)\nCondition (unitless)\nNumber_of_Replicates (count)\nInitial_MPn (nM)\nAdditional_Amendments (unitless)\nBottle (unitless)\nT1_Timepoint (days)\nT1_Timepoint_mean_CH4_production (nmol g^-1)\nT1_Timepoint_CH4_no_sig_fig_rounding (nmol g^-1)\nT2_Timepoint (days)\nT2_Timepoint_mean_CH4_production (nmol g^-1)\nT2_Timepoint_CH4_no_sig_fig_rounding (nmol g^-1)\nT3_Timepoint (days)\nT3_Timepoint_CH4_production (nmol g^-1)\nT3_Timepoint_CH4_no_sig_fig_rounding (nmol g^-1)\n... (40 more variables)\n | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_911212_v1/index.htmlTable | https://www.bco-dmo.org/dataset/911212
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_911212_v1.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_911212_v1&showErrors=false&email= | BCO-DMO | bcodmo_dataset_911212_v1 | |||||
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_712761 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_712761.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_712761/ | public | [Geochemistry Summary] - Geochemistry summary data: single cell isotope incorporation of 1H, 2H, 12C14N, 12C15N, 12C12C, 12C13C ions from Chikyu-337 (IODP 337) ( Determination of deep biosphere cell activity and identity utilizing the state of the art low-biomass, single cell techniques developed at JAMSTEC in their class 10,000 clean room) | Single cell isotope incorporation of 1H, 2H, 12C14N, 12C15N. 12C12C, 12C13C ions from samples collected on IODP Expedition 337.\n\ncdm_data_type = Other\nVARIABLES:\nOrder (unitless)\nSample (unitless)\nHorizon (unitless)\nCondition (unitless)\nAutoclaved (unitless)\nAmendment (unitless)\ncells_per_ml (number/mL)\ncells_per_cc_rock (number/(cm^3))\ncells_per_g_rock (number/g)\nDel_13C_DIC (Del 13 C DIC, per mil)\nmM_DIC (M M DIC, milliMolar (mM))\n | https://erddap.bco-dmo.org/erddap/metadata/iso19115/xml/bcodmo_dataset_712761_iso19115.xml | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_712761/index.htmlTable | https://www.bco-dmo.org/dataset/712761
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_712761.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_712761&showErrors=false&email= | BCO-DMO | bcodmo_dataset_712761 | ||||
| log in | [Incubation Data] - Coral physiological and biological data collected during acute exposures in static incubation chambers in Hawaii from June 2023 to January 2025 (Collaborative Research: Reevaluating calcification response to changes in seawater chemistry by testing the Proton Flux Hypothesis and the Coral Metabolism Model) | This dataset contains carbonate chemistry, physiological response, and incubation measurements from controlled static incubations of two Hawaiian coral species, Montipora capitata (branching and plating morphologies, urn:lsid:marinespecies.org:taxname:287697) and Pocillopora acuta (urn:lsid:marinespecies.org:taxname:759099). Corals were exposed to a series of experimental seawater chemistry treatments designed to independently manipulate proton concentration and carbonate ion availability through adjustments to total alkalinity and dissolved inorganic carbon. Treatments spanned ambient conditions as well as elevated and reduced total alkalinity, elevated and reduced pH, and combinations of altered pH and alkalinity. For each treatment, seawater parameters were measured, including temperature, salinity, dissolved oxygen, pH on the total scale, total alkalinity, bicarbonate, carbonate ion concentration, pCO2, dissolved inorganic carbon, and aragonite saturation state. Coral incubations were conducted under static conditions to quantify changes in carbonate chemistry associated with coral metabolic activity and to assess species- and morphology-specific calcification responses across distinct carbonate system states. This dataset supports the evaluation of the Proton Flux Hypothesis and Coral Metabolism Model by providing detailed carbonate chemistry conditions and coral responses across a spectrum of experimentally generated seawater states.\n\ncdm_data_type = Other\nVARIABLES:\ndate (unitless)\nspecies (unitless)\ntreatment (unitless)\ncondition (unitless)\ngenotype (unitless)\ntime_elapsed (Time, hours)\ntemp (degrees Celsius (degC))\ndo_mg_l (milligrams per liter (mg/L))\nsal (parts per thousand (ppt))\nph_nbs (NBS scale)\nph_mv (millivolts (mV))\nbwt (grams (g))\n... (7 more variables)\n | BCO-DMO | bcodmo_dataset_995172_v1 | ||||||||||||
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_1005573_v1 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_1005573_v1.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_1005573_v1/ | public | [IUE of marine AOA under different temp and FE] - Iron use efficiency (IUE) of the model marine ammonia-oxidizing archaea (AOA), Nitrosopumilus maritimus, under controlled laboratory conditions across a range of temperatures and iron concentrations (Collaborative Research: The impact of ocean warming on bioactive trace metal requirements and use efficiencies of marine nitrifying microorganisms) | This dataset quantifies iron use efficiency (IUE) of the model marine ammonia-oxidizing archaea, Nitrosopumilus maritimus, under controlled laboratory conditions across a range of temperatures (23, 27, and 32 degrees Celsius) and iron concentrations (iron-replete, 1250 nM; iron-limited, 250 nM). Measurements include carbon fixation rates derived from 14C-bicarbonate incorporation assays and cellular iron quotas determined by inductively coupled plasma mass spectrometry (ICP-MS), from which IUE was calculated. Experiments were conducted in batch cultures with biological replicates for each treatment to assess the interactive effects of temperature and iron limitation on AOA physiology.\n\ncdm_data_type = Other\nVARIABLES:\nCondition (unitless)\ntotal_iron_concentration (nanomole per liter (nM))\nTemperature (degrees Celsius (°C))\nPOC (micromole carbon per liter (μmol C L⁻¹))\nPOC_std (micromole carbon per liter (μmol C L⁻¹))\nFe (nanomole per liter (nM))\nFe_std (nanomole per liter (nM))\nFe_C_ratio (micromole per mole (μmol mol⁻¹))\nFe_C_ratio_std (micromole per mole (μmol mol⁻¹))\nCarbon_fixation (micromole carbon per liter per day (μmol C L⁻¹ d⁻¹))\nCarbon_fixation_std (micromole carbon per liter per day (μmol C L⁻¹ d⁻¹))\niron_use_efficiency (micromole carbon per hour per micromole iron (μmol C h⁻¹ μmol Fe⁻¹))\niron_use_efficiency_std (micromole carbon per hour per micromole iron (μmol C h⁻¹ μmol Fe⁻¹))\nReplicates (count)\n | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_1005573_v1/index.htmlTable | https://osprey.bco-dmo.org/dataset/1005573
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_1005573_v1.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_1005573_v1&showErrors=false&email= | BCO-DMO | bcodmo_dataset_1005573_v1 | |||||
| log in | [Microsensor profiles] - Coral microsensor profiles collected during exposure to low pH in outdoor mesocosms in Hawaii from July 2023 to August 2023 (Collaborative Research: Reevaluating calcification response to changes in seawater chemistry by testing the Proton Flux Hypothesis and the Coral Metabolism Model) | This dataset contains measurements of proton and oxygen fluxes, diffusive boundary layer (DBL) structure, and carbonate chemistry conditions for two Hawaiian coral species, Montipora capitata (urn:lsid:marinespecies.org:taxname:287697) and Pocillopora acuta (urn:lsid:marinespecies.org:taxname:759099), exposed to controlled seawater carbonate chemistry treatments. Coral colonies were collected from fringing reef habitat in Kāne‘ohe Bay, Hawai‘i, acclimated in flow-through mesocosms, and subjected to a 19-day exposure to either ambient or elevated pCO2 conditions. Seawater chemistry, including temperature, salinity, dissolved oxygen, pH, total alkalinity, and derived carbonate system parameters, was monitored throughout the experiment.\nMicrosensor profiling of oxygen and pH was conducted in a custom flow-controlled flume to quantify boundary layer gradients and calculate proton and oxygen fluxes using Fick's first law. Measurements were collected at high vertical resolution above coral tissue surfaces to characterize fine-scale chemical environments under both control and elevated pCO2 conditions. These data provide detailed assessments of how coral boundary layer chemistry and metabolic fluxes respond to short-term ocean acidification exposure in two ecologically important coral taxa.\nThe dataset includes raw microsensor profiles, calculated DBL thickness, proton and oxygen fluxes, buoyant weights, genotype identifiers, and all associated seawater carbonate chemistry measurements. These observations support broader efforts to understand coral physiological responses to ocean acidification and provide mechanistic insight into species-specific and condition-dependent changes in coral boundary layer processes.\n\ncdm_data_type = Other\nVARIABLES:\nexperiment_year (unitless)\ndistance_um (micrometers (um))\nspecies (unitless)\ntreatment (unitless)\ncondition (unitless)\ngenotype (unitless)\nO2 (milligrams per liter (mg/L))\npH (pH Total Scale)\nhplus (unitless)\nbulk (unitless)\n | BCO-DMO | bcodmo_dataset_995180_v1 | ||||||||||||
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_712652 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_712652.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_712652/ | public | [NanoSIMS HCN - All Data] - Single cell isotope incorporation of 1H, 2H, 12C14N, 12C15N. 12C12C, 12C13C from Chikyu-337 (IODP 337) ( Determination of deep biosphere cell activity and identity utilizing the state of the art low-biomass, single cell techniques developed at JAMSTEC in their class 10,000 clean room) | Single cell isotope incorporation of 1H, 2H, 12C14N, 12C15N. 12C12C, 12C13C ions from samples collected on IODP Expedition 337.\n\ncdm_data_type = Other\nVARIABLES:\nfile_name (unitless)\nSample (unitless)\nCondition (unitless)\nROI (unitless)\nMorph (unitless)\nXi (microns (or pixels, if specified))\nYi (microns (or pixels, if specified))\nH1_MEANi (unitless)\nH1_Poiss_Ei (unitless)\nH1_Poiss_pcnt_Ei (unitless)\nH1_SIZEi (microns (or pixels, if specified))\nH1_PIXELSi (unitless)\nH1_LWratio (unitless)\nH2_MEANi (unitless)\nH2_Poiss_Ei (unitless)\nH2_Poiss_pcnt_Ei (unitless)\nH2_SIZEi (microns (or pixels, if specified))\nH2_PIXELSi (unitless)\nH2_LWratio (unitless)\nH2R_MEAN (H2 R MEAN, unitless)\nH2f_MEAN (unitless)\nC12_MEANi (unitless)\nC12_Poiss_Ei (unitless)\nC12_Poiss_pcnt_Ei (unitless)\nC12_SIZEi (microns (or pixels, if specified))\nC12_PIXELSi (unitless)\n... (26 more variables)\n | https://erddap.bco-dmo.org/erddap/metadata/iso19115/xml/bcodmo_dataset_712652_iso19115.xml | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_712652/index.htmlTable | https://www.bco-dmo.org/dataset/712652
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_712652.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_712652&showErrors=false&email= | BCO-DMO | bcodmo_dataset_712652 | ||||
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_3669 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_3669.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_3669/ | public | [P_globosa_growth] - Results from metal limitation experiments (Cu, Zn, Fe, Mn) conducted in the prymensiophyte Phaeocystis globosa carried out in the Kustka and Allen labs at Rutgers in Newark, NJ from 2007-2011 (Expression profiling and functional genomics of a pennate diatom: Mechanisms of iron acquisition, stress acclimation, and recovery) | Results from metal limitation experiments (Cu, Zn, Fe, Mn) conducted in the prymensiophyte Phaeocystis globosa carried out in the Kustka and Allen labs at Rutgers in Newark, NJ from 2007-2011\n\ncdm_data_type = Other\nVARIABLES:\ncondition (dimensionless)\ngrowth_rate_mean (ln(cell density)/day)\ngrowth_rate_mean_sd (dimensionless)\np_fe_prime (dimensionless)\np_cu_prime (dimensionless)\np_mn_prime (dimensionless)\np_zn_prime (dimensionless)\nreplicate (dimensionless)\ngrowth_rate (ln(cell density)/day)\n | https://erddap.bco-dmo.org/erddap/metadata/iso19115/xml/bcodmo_dataset_3669_iso19115.xml | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_3669/index.htmlTable | https://www.bco-dmo.org/dataset/3669
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_3669.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_3669&showErrors=false&email= | BCO-DMO | bcodmo_dataset_3669 | ||||
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_779540 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_779540.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_779540/ | public | [Retinal Response] - Retinal responses during exposure to decreasing oxygen partial pressure (pO2) (Vision-mediated influence of low oxygen on the physiology and ecology of marine larvae) | Retinal responses during exposure to decreasing oxygen partial pressure (pO2) in marine invertebrate larvae determined with electroretinograms.\n\ncdm_data_type = Other\nVARIABLES:\nSpecies (unitless)\nExperiment_Name (unitless)\nRound (unitless)\nO2_umol_l (micromole per liter (umol/L))\nO2_ml_l (milliliter per liter (ml/l))\nO2_umol_kg (micromole per kg (umol/kg))\nO2_pO2 (O2 P O2, kiloPascal (kPa))\nn_ctrl_area (unitless)\nRunningAvg (Running Avg, unitless)\nRunAvgLine (Run Avg Line, unitless)\nCondition (unitless)\n | https://erddap.bco-dmo.org/erddap/metadata/iso19115/xml/bcodmo_dataset_779540_iso19115.xml | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_779540/index.htmlTable | https://www.bco-dmo.org/dataset/779540
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_779540.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_779540&showErrors=false&email= | BCO-DMO | bcodmo_dataset_779540 | ||||
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_644080 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_644080.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_644080/ | public | [Sargassum recruit-sized growth and survival with conspecifics - figures 5 and 6] - Survival and growth of recruit-sized ramets growing inside or outside Sargassum beds (crowded and isolated conditions, respectively) in the MPA and non-MPA of two villages in Fiji (Killer Seaweeds: Allelopathy against Fijian Corals) | Survival and growth of recruit-sized ramets of Sargassum polycystum growing\ninside or outside Sargassum beds (crowded and isolated conditions,\nrespectively) in protected and non-protected areas (MPA and non-MPA,\nrespectively) in two villages in Fiji.\n \nGrowth was obtained using the initial height measurement from each ramet and\nsubtracting it from its final height, meaning the ramets that died were\nrecorded as negative change. An average final height was calculated from two\nsub-samples (the two MPA and two non-MPA ramets) on each tile after 3 months\nof experiment. Survival was the average number of days survived by the two MPA\nramets and by the two non-MPA ramets in each tile Details in Dell et al. 2016\nPlos One.\n \nRelated Reference: \n Dell, C., Longo, G.O., Hay, M.E. (2016) Positive feedbacks enhance\nmacroalgal resilience on Degraded Coral Reefs. Plos One.\n \nRelated Datasets: \n[Sargassum mature growth - figure 2](\\\\http://www.bco-\ndmo.org/dataset/643915\\\\) \n[Sargassum recruit-sized survival - figure 3](\\\\http://www.bco-\ndmo.org/dataset/644035\\\\) \n[Sargassum mature growth conspecific - figure 4](\\\\http://www.bco-\ndmo.org/dataset/644062\\\\)\n\ncdm_data_type = Other\nVARIABLES:\norigin_location (unitless)\norigin (unitless)\nlocation (unitless)\ncondition (unitless)\n... (7 more variables)\n | https://erddap.bco-dmo.org/erddap/metadata/fgdc/xml/bcodmo_dataset_644080_fgdc.xml | https://erddap.bco-dmo.org/erddap/metadata/iso19115/xml/bcodmo_dataset_644080_iso19115.xml | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_644080/index.htmlTable | https://www.bco-dmo.org/dataset/644080
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_644080.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_644080&showErrors=false&email= | BCO-DMO | bcodmo_dataset_644080 | |||
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_3668.subset | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_3668 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_3668.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_3668/ | public | [T_pseudonana_growth] - Results from metal limitation experiments (Cu, Zn, Fe, Mn) conducted in the diatom T. pseudonana carried out in the Kustka and Allen labs at Rutgers in Newark, NJ from 2007-2011 (Expression profiling and functional genomics of a pennate diatom: Mechanisms of iron acquisition, stress acclimation, and recovery) | Results from metal limitation experiments (Cu, Zn, Fe, Mn) conducted in the diatom T. pseudonana carried out in the Kustka and Allen labs at Rutgers in Newark, NJ from 2007-2011\n\ncdm_data_type = Other\nVARIABLES:\nsample (dimensionless)\nmetal (dimensionless)\ncondition (dimensionless)\ngrowth_rate (ln(cell density)/day)\ngrowth_rate_se (dimensionless)\np_fe_prime (dimensionless)\np_cu_prime (dimensionless)\np_mn_prime (dimensionless)\np_zn_prime (dimensionless)\n | https://erddap.bco-dmo.org/erddap/metadata/iso19115/xml/bcodmo_dataset_3668_iso19115.xml | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_3668/index.htmlTable | https://www.bco-dmo.org/dataset/3668
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_3668.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_3668&showErrors=false&email= | BCO-DMO | bcodmo_dataset_3668 | |||
| https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_709880 | https://erddap.bco-dmo.org/erddap/tabledap/bcodmo_dataset_709880.graph | https://erddap.bco-dmo.org/erddap/files/bcodmo_dataset_709880/ | public | [Visual monitoring of A. cervicornis] - Bleaching, disease, and mortality on A. cervicornis individuals in Elliot Key, Florida during 2014 and 2015 (EMUCoReS project) (RAPID: A hyper-thermal anomaly in the Florida Reef Tract: An opportunity to explore the mechanisms underpinning patterns of coral bleaching and disease) | Bleaching, disease, and mortality on A. cervicornis individuals in Elliot Key, Florida during 2014 and 2015 (EMUCoReS project)\n\ncdm_data_type = Other\nVARIABLES:\nmonth_sampled (unitless)\ngenet (unitless)\ncondition (unitless)\nsample_number (unitless)\nA3_S_fitti (percent)\nB2_S_psygmophilium (percent)\nD1a_S_trenchii (percent)\n | https://erddap.bco-dmo.org/erddap/metadata/iso19115/xml/bcodmo_dataset_709880_iso19115.xml | https://erddap.bco-dmo.org/erddap/info/bcodmo_dataset_709880/index.htmlTable | https://www.bco-dmo.org/dataset/709880
| https://erddap.bco-dmo.org/erddap/rss/bcodmo_dataset_709880.rss | https://erddap.bco-dmo.org/erddap/subscriptions/add.html?datasetID=bcodmo_dataset_709880&showErrors=false&email= | BCO-DMO | bcodmo_dataset_709880 |