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Grid DAP Data | Sub- set | Table DAP Data | Make A Graph | W M S | Source Data Files | Acces- sible | Title | Sum- mary | FGDC, ISO, Metadata | Back- ground Info | RSS | E | Institution | Dataset ID |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
data | graph | files | public | [Plocamium pigments] - Photosynthetic pigment concentrations in Plocamium cartilagineum, trials 3-8, 2014-2015 (Seaweed OA Resilience project) (Ocean Acidification: Scope for Resilience to Ocean Acidification in Macroalgae) | I M | background | BCO-DMO | bcodmo_dataset_731213 |
Row Type | Variable Name | Attribute Name | Data Type | Value |
---|---|---|---|---|
attribute | NC_GLOBAL | access_formats | String | .htmlTable,.csv,.json,.mat,.nc,.tsv |
attribute | NC_GLOBAL | acquisition_description | String | Plocamium cartilagineum was collected from Catalina Island in June - Nov. 2014 and Jan. 2015. Culture pots were placed in large thermally insulated coolers in a temperature-controlled water bath at either 15 or 20\u00b0C under saturating illumination of ~150 \u00b5moles photons/m^2/s. pCO2 treatments were supplied to closed culture pots by use of a gas mixing system combining Nitrogen, Oxygen and Carbon Dioxide to specific CO2 partial pressures, 20.9% oxygen and the balance being Nitrogen. Chlorophyll a concentrations were determined using the method of Duncan and Harrison (1982). Phycobiliprotein concentrations determined using the method of Rosenberg (1981). Note: Trial 1 was a pilot test of culture system and methodological procedures so was not used for data collection in the testing of hypotheses. See Supplemental Files for a table of culture conditions for each of\u00a0the 8 trials (pdf). |
attribute | NC_GLOBAL | awards_0_award_nid | String | 55177 |
attribute | NC_GLOBAL | awards_0_award_number | String | OCE-1316198 |
attribute | NC_GLOBAL | awards_0_data_url | String | http://www.nsf.gov/awardsearch/showAward?AWD_ID=1316198 |
attribute | NC_GLOBAL | awards_0_funder_name | String | NSF Division of Ocean Sciences |
attribute | NC_GLOBAL | awards_0_funding_acronym | String | NSF OCE |
attribute | NC_GLOBAL | awards_0_funding_source_nid | String | 355 |
attribute | NC_GLOBAL | awards_0_program_manager | String | David L. Garrison |
attribute | NC_GLOBAL | awards_0_program_manager_nid | String | 50534 |
attribute | NC_GLOBAL | cdm_data_type | String | Other |
attribute | NC_GLOBAL | comment | String | Photosynthetic pigment concentrations in Plocamium cartilagineum_trials_3-8 PI's: J. Kubler, S. Dudgeon (CSU-Northridge) version: 2018-03-19 |
attribute | NC_GLOBAL | Conventions | String | COARDS, CF-1.6, ACDD-1.3 |
attribute | NC_GLOBAL | creator_email | String | info at bco-dmo.org |
attribute | NC_GLOBAL | creator_name | String | BCO-DMO |
attribute | NC_GLOBAL | creator_type | String | institution |
attribute | NC_GLOBAL | creator_url | String | https://www.bco-dmo.org/ |
attribute | NC_GLOBAL | data_source | String | extract_data_as_tsv version 2.3 19 Dec 2019 |
attribute | NC_GLOBAL | date_created | String | 2018-03-20T19:08:42Z |
attribute | NC_GLOBAL | date_modified | String | 2019-06-03T17:58:58Z |
attribute | NC_GLOBAL | defaultDataQuery | String | &time<now |
attribute | NC_GLOBAL | doi | String | 10.1575/1912/bco-dmo.731213.1 |
attribute | NC_GLOBAL | infoUrl | String | https://www.bco-dmo.org/dataset/731213 |
attribute | NC_GLOBAL | institution | String | BCO-DMO |
attribute | NC_GLOBAL | instruments_0_acronym | String | UV Spectrophotometer-Shimadzu |
attribute | NC_GLOBAL | instruments_0_dataset_instrument_description | String | Used to measure concentrations of pigments. |
attribute | NC_GLOBAL | instruments_0_dataset_instrument_nid | String | 731222 |
attribute | NC_GLOBAL | instruments_0_description | String | The Shimadzu UV Spectrophotometer is manufactured by Shimadzu Scientific Instruments (ssi.shimadzu.com). Shimadzu manufacturers several models of spectrophotometer; refer to dataset for make/model information. |
attribute | NC_GLOBAL | instruments_0_instrument_external_identifier | String | https://vocab.nerc.ac.uk/collection/L05/current/LAB20/ |
attribute | NC_GLOBAL | instruments_0_instrument_name | String | UV Spectrophotometer-Shimadzu |
attribute | NC_GLOBAL | instruments_0_instrument_nid | String | 595 |
attribute | NC_GLOBAL | instruments_0_supplied_name | String | Shimadzu UV-2450 UV-visible spectrophotometer |
attribute | NC_GLOBAL | keywords | String | apc, bco, bco-dmo, biological, chemical, chemistry, Chl_a, chlorophyll, concentration, concentration_of_chlorophyll_in_sea_water, data, dataset, dmo, earth, Earth Science > Oceans > Ocean Chemistry > Chlorophyll, erddap, management, ocean, oceanography, oceans, office, PB_ChlA_ratio, plant, Plant_ID, pot, Pot_ID, preliminary, science, sea, seawater, total, Total_PB, trial, water |
attribute | NC_GLOBAL | keywords_vocabulary | String | GCMD Science Keywords |
attribute | NC_GLOBAL | license | String | https://www.bco-dmo.org/dataset/731213/license |
attribute | NC_GLOBAL | metadata_source | String | https://www.bco-dmo.org/api/dataset/731213 |
attribute | NC_GLOBAL | param_mapping | String | {'731213': {}} |
attribute | NC_GLOBAL | parameter_source | String | https://www.bco-dmo.org/mapserver/dataset/731213/parameters |
attribute | NC_GLOBAL | people_0_affiliation | String | California State University Northridge |
attribute | NC_GLOBAL | people_0_affiliation_acronym | String | CSU-Northridge |
attribute | NC_GLOBAL | people_0_person_name | String | Dr Janet E Kubler |
attribute | NC_GLOBAL | people_0_person_nid | String | 51681 |
attribute | NC_GLOBAL | people_0_role | String | Principal Investigator |
attribute | NC_GLOBAL | people_0_role_type | String | originator |
attribute | NC_GLOBAL | people_1_affiliation | String | California State University Northridge |
attribute | NC_GLOBAL | people_1_affiliation_acronym | String | CSU-Northridge |
attribute | NC_GLOBAL | people_1_person_name | String | Dr Steve Dudgeon |
attribute | NC_GLOBAL | people_1_person_nid | String | 51682 |
attribute | NC_GLOBAL | people_1_role | String | Co-Principal Investigator |
attribute | NC_GLOBAL | people_1_role_type | String | originator |
attribute | NC_GLOBAL | people_2_affiliation | String | Woods Hole Oceanographic Institution |
attribute | NC_GLOBAL | people_2_affiliation_acronym | String | WHOI BCO-DMO |
attribute | NC_GLOBAL | people_2_person_name | String | Nancy Copley |
attribute | NC_GLOBAL | people_2_person_nid | String | 50396 |
attribute | NC_GLOBAL | people_2_role | String | BCO-DMO Data Manager |
attribute | NC_GLOBAL | people_2_role_type | String | related |
attribute | NC_GLOBAL | project | String | Seaweed OA Resilience |
attribute | NC_GLOBAL | projects_0_acronym | String | Seaweed OA Resilience |
attribute | NC_GLOBAL | projects_0_description | String | Benthic macroalgae contribute to intensely productive near shore ecosystems and little is known about the potential effects of ocean acidification on non-calcifying macroalgae. Kübler and Dudgeon will test hypotheses about two macroalgae, Ulva spp. and Plocamium cartilagineum, which, for different reasons, are hypothesized to be more productive and undergo ecological expansions under predicted changes in ocean chemistry. They have designed laboratory culture-based experiments to quantify the scope for response to ocean acidification in Plocamium, which relies solely on diffusive uptake of CO2, and populations of Ulva spp., which have an inducible concentrating mechanism (CCM). The investigators will culture these algae in media equilibrated at 8 different pCO2 levels ranging from 380 to 940 ppm to address three key hypotheses. The first is that macroalgae (such as Plocamium cartilagineum) that are not able to acquire inorganic carbon in changed form will benefit, in terms of photosynthetic and growth rates, from ocean acidification. There is little existing data to support this common assumption. The second hypothesis is that enhanced growth of Ulva sp. under OA will result from the energetic savings from down regulating the CCM, rather than from enhanced photosynthesis per se. Their approach will detect existing genetic variation for adaptive plasticity. The third key hypothesis to be addressed in short-term culture experiments is that there will be a significant interaction between ocean acidification and nitrogen limited growth of Ulva spp., which are indicator species of eutrophication. Kübler and Dudgeon will be able to quantify the individual effects of ocean acidification and nitrogenous nutrient addition on Ulva spp. and also, the synergistic effects, which will inevitably apply in many highly productive, shallow coastal areas. The three hypotheses being addressed have been broadly identified as urgent needs in our growing understanding of the impacts of ocean acidification. |
attribute | NC_GLOBAL | projects_0_end_date | String | 2016-05 |
attribute | NC_GLOBAL | projects_0_geolocation | String | Temperate coastal waters of the USA (30 - 45 N latitude, -66 to -88 W and -117 to -125 W longitude) |
attribute | NC_GLOBAL | projects_0_name | String | Ocean Acidification: Scope for Resilience to Ocean Acidification in Macroalgae |
attribute | NC_GLOBAL | projects_0_project_nid | String | 2275 |
attribute | NC_GLOBAL | projects_0_start_date | String | 2013-06 |
attribute | NC_GLOBAL | publisher_name | String | Biological and Chemical Oceanographic Data Management Office (BCO-DMO) |
attribute | NC_GLOBAL | publisher_type | String | institution |
attribute | NC_GLOBAL | sourceUrl | String | (local files) |
attribute | NC_GLOBAL | standard_name_vocabulary | String | CF Standard Name Table v55 |
attribute | NC_GLOBAL | summary | String | Photosynthetic pigment concentrations in Plocamium cartilagineum, trials 3-8, 2014-2015. |
attribute | NC_GLOBAL | title | String | [Plocamium pigments] - Photosynthetic pigment concentrations in Plocamium cartilagineum, trials 3-8, 2014-2015 (Seaweed OA Resilience project) (Ocean Acidification: Scope for Resilience to Ocean Acidification in Macroalgae) |
attribute | NC_GLOBAL | version | String | 1 |
attribute | NC_GLOBAL | xml_source | String | osprey2erddap.update_xml() v1.3 |
variable | Trial | byte | ||
attribute | Trial | _FillValue | byte | 127 |
attribute | Trial | actual_range | byte | 3, 8 |
attribute | Trial | bcodmo_name | String | exp_id |
attribute | Trial | description | String | Experimental trial - Plocamium |
attribute | Trial | long_name | String | Trial |
attribute | Trial | units | String | unitless |
variable | Pot_ID | byte | ||
attribute | Pot_ID | _FillValue | byte | 127 |
attribute | Pot_ID | actual_range | byte | 0, 9 |
attribute | Pot_ID | bcodmo_name | String | sample |
attribute | Pot_ID | description | String | Number ID of culture pot: integer (0-9) 0 denotes initial pre-experiment state |
attribute | Pot_ID | long_name | String | Pot ID |
attribute | Pot_ID | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/ACYC/ |
attribute | Pot_ID | units | String | unitless |
variable | Plant_ID | byte | ||
attribute | Plant_ID | _FillValue | byte | 127 |
attribute | Plant_ID | actual_range | byte | 1, 15 |
attribute | Plant_ID | bcodmo_name | String | sample |
attribute | Plant_ID | description | String | Replicate ID in treatment |
attribute | Plant_ID | long_name | String | Plant ID |
attribute | Plant_ID | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/ACYC/ |
attribute | Plant_ID | units | String | unitless |
variable | Chl_a | float | ||
attribute | Chl_a | _FillValue | float | NaN |
attribute | Chl_a | actual_range | float | 11.5159, 450.7328 |
attribute | Chl_a | bcodmo_name | String | chlorophyll a |
attribute | Chl_a | colorBarMaximum | double | 30.0 |
attribute | Chl_a | colorBarMinimum | double | 0.03 |
attribute | Chl_a | colorBarScale | String | Log |
attribute | Chl_a | description | String | Chlorophyll a concentration |
attribute | Chl_a | long_name | String | Concentration Of Chlorophyll In Sea Water |
attribute | Chl_a | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/CPHLHPP1/ |
attribute | Chl_a | units | String | micrograms/gram fresh weight |
variable | PE | double | ||
attribute | PE | _FillValue | double | NaN |
attribute | PE | actual_range | double | 21.0532, 1053.3171 |
attribute | PE | bcodmo_name | String | pigment_concentration |
attribute | PE | description | String | Phycoerythrin concentration |
attribute | PE | long_name | String | PE |
attribute | PE | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/OPWC/ |
attribute | PE | units | String | micrograms/gram fresh weight |
variable | PC | float | ||
attribute | PC | _FillValue | float | NaN |
attribute | PC | actual_range | float | 0.0, 468.3999 |
attribute | PC | bcodmo_name | String | pigment_concentration |
attribute | PC | description | String | Phycocyanin concentration |
attribute | PC | long_name | String | PC |
attribute | PC | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/OPWC/ |
attribute | PC | units | String | micrograms/gram fresh weight |
variable | APC | double | ||
attribute | APC | _FillValue | double | NaN |
attribute | APC | actual_range | double | 0.0, 1802.243 |
attribute | APC | bcodmo_name | String | pigment_concentration |
attribute | APC | description | String | Allophycocyanin concentration |
attribute | APC | long_name | String | APC |
attribute | APC | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/OPWC/ |
attribute | APC | units | String | micrograms/gram fresh weight |
variable | Total_PB | double | ||
attribute | Total_PB | _FillValue | double | NaN |
attribute | Total_PB | actual_range | double | 42.7051, 3216.2617 |
attribute | Total_PB | bcodmo_name | String | pigment_concentration |
attribute | Total_PB | description | String | Total Phycobiliprotein concentration |
attribute | Total_PB | long_name | String | Total PB |
attribute | Total_PB | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/OPWC/ |
attribute | Total_PB | units | String | micrograms/gram fresh weight |
variable | PB_ChlA_ratio | float | ||
attribute | PB_ChlA_ratio | _FillValue | float | NaN |
attribute | PB_ChlA_ratio | actual_range | float | 0.3609, 76.5311 |
attribute | PB_ChlA_ratio | bcodmo_name | String | pigment_concentration |
attribute | PB_ChlA_ratio | colorBarMaximum | double | 30.0 |
attribute | PB_ChlA_ratio | colorBarMinimum | double | 0.03 |
attribute | PB_ChlA_ratio | colorBarScale | String | Log |
attribute | PB_ChlA_ratio | description | String | Ratio of total Phycobiliprotein to Chlorophyll A |
attribute | PB_ChlA_ratio | long_name | String | Concentration Of Chlorophyll In Sea Water |
attribute | PB_ChlA_ratio | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/OPWC/ |
attribute | PB_ChlA_ratio | units | String | dimensionless |
The information in the table above is also available in other file formats (.csv, .htmlTable, .itx, .json, .jsonlCSV1, .jsonlCSV, .jsonlKVP, .mat, .nc, .nccsv, .tsv, .xhtml) via a RESTful web service.