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Row Type | Variable Name | Attribute Name | Data Type | Value |
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attribute | NC_GLOBAL | access_formats | String | .htmlTable,.csv,.json,.mat,.nc,.tsv |
attribute | NC_GLOBAL | acquisition_description | String | Micronekton were collected using a 10 m2 multiple opening-closing net and\nenvironmental sensing system (MOCNESS) at Station ALOHA (22.75\\u02daN,\n158\\u02daW) in March and August of 2011 and in February and September of 2014\nwith a few samples from other locations around Oahu in 2011 (Choy et al 2015).\nMicronekton were collected over five depth zones between the surface and 1500\nm: 0 \\u2013 100 m, 100 \\u2013 500 m, 500 \\u2013 700 m, 700 \\u2013 1000 m and\n1000 \\u2013 1500 m. At sea, micronekton were sorted and identified to the most\nspecific taxonomic level, then measured and photographed. Standard length\nmeasurements were taken for fish, carapace length and total length were taken\nfor crustaceans and both mantle length and total length were taken for\ncephalopods. For most fishes, white muscle tissue was removed and frozen in a\ncryovial in liquid nitrogen. Small fishes, crustaceans and gelatinous\norganisms were frozen whole or individuals were pooled for sufficient tissue\nrequired for stable isotope analysis. Specimens were transferred to a\n\\u201180\\u02daC freezer until the samples could be prepared for stable isotope\nanalysis.\n \nEighty-three samples (individual specimens or small groups of conspecifics)\nwere selected for stable isotope analysis. Samples selected for stable isotope\nanalysis represented different combinations of trophic strategies (suspension\nfeeding, zooplanktivores, micronektonivores), depth guilds (epipelagic,\nmesopelagic, bathypelagic) and migrating behaviors based on available\necological information (e.g., Clarke 1973, Maynard 1982). Each sample was\nfreeze-dried and ground using a ceramic mortar and pestle. For bulk tissue\ncarbon and nitrogen isotope analysis approximately 0.5 mg of each sample was\nweighed and placed into a tin boat. Carbon and nitrogen isotopic compositions\nwere determined using an isotope ratio mass spectrometer (DeltaPlusXP) coupled\nto an elemental analyzer (Costech Model 4010). Isotopic ratios are given in\n\\u03b4-notation relative to the international standards VPDB and atmospheric\nN2. Accuracy and precision were 0.2\\u2030 based on glycine and homogenized\nfish tissue reference materials analyzed every ten samples. The isotopic\ncompositions of the reference materials have been extensively characterized\nusing NIST certified reference materials in the UH laboratory and verified\nindependently in other isotope laboratories.\n \nAmino acid-specific stable N isotope composition was determined on\napproximately 15 mg (dry weight) of each sample underwent acid hydrolysis and\nderivatization yielding trifluoroacetic (TFA) amino acid esters following the\nmethods of Popp et al. (2007) and Hannides et al. (2009b).; The nitrogen\nisotope composition of the trifluoroacetic amino acid esters were determined\nusing an isotope ratio mass spectrometer (Thermo Scientific Delta V Plus or\nThermo Scientific MAT 253 IRMS) interfaced with a Thermo Finnigan GC-C III.\nSamples were injected onto a BPx5 forte capillary column (60m x 0.32 mm x 1.0\n\\u00b5m film thickness) at an injector temperature of 180\\u02daC with a\nconstant helium flow rate of 1.4 mL/min. The column was initially held at\n50\\u02daC for two minutes and then increased at a rate of 15\\u02daC/min to\n120\\u02daC. Temperature was then increased at a rate of 4\\u02daC/min to\n195\\u02daC, then to 255\\u02daC at a rate of 5\\u02daC/min and finally to\n300\\u02daC at a rate of 15\\u02daC/min, holding at the final temperature for\neight minutes. Each sample was analyzed in triplicate and co-injected with the\nreference compounds norleucine (Nor) and aminoadipic acid (AAA) of known\nisotopic composition. A suite of pure amino acids of known nitrogen isotopic\ncomposition (Ala, Thr, Ile, Pro, Glu, and Phe) was also injected every three\nruns as an extra measure of accuracy for the instrument. Reference compounds\nNor and AAA, as well as the suite of amino acids, were used to normalize the\nmeasured isotope values. Standard deviation for all amino acids averaged\n\\u00b10.4\\u2030 (range 0.0-3.1\\u2030). |
attribute | NC_GLOBAL | awards_0_award_nid | String | 560590 |
attribute | NC_GLOBAL | awards_0_award_number | String | OCE-1433846 |
attribute | NC_GLOBAL | awards_0_data_url | String | http://www.nsf.gov/awardsearch/showAward.do?AwardNumber=1433846 |
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 | Donald L. Rice |
attribute | NC_GLOBAL | awards_0_program_manager_nid | String | 51467 |
attribute | NC_GLOBAL | cdm_data_type | String | Other |
attribute | NC_GLOBAL | comment | String | Amino acid specific isotope values for micronekton \n from the Pacific Subtropical Gyre, Station ALOHA approximately 100 km north of Oahu (22.75N, 158W) \n Published as Table S1 in Gloeckler et al (2018) L&O, doi: 10.1002/lno.10762 \n PI: B. Popp (UH) \n version: 2018-12-05 |
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 | 2018-12-06T14:23:59Z |
attribute | NC_GLOBAL | date_modified | String | 2019-03-18T13:40:35Z |
attribute | NC_GLOBAL | defaultDataQuery | String | &time<now |
attribute | NC_GLOBAL | doi | String | 10.1575/1912/bco-dmo.750972.1 |
attribute | NC_GLOBAL | infoUrl | String | https://www.bco-dmo.org/dataset/750972 |
attribute | NC_GLOBAL | institution | String | BCO-DMO |
attribute | NC_GLOBAL | instruments_0_acronym | String | IR Mass Spec |
attribute | NC_GLOBAL | instruments_0_dataset_instrument_description | String | Used to measure carbon and nitrogen isotopic compositions. |
attribute | NC_GLOBAL | instruments_0_dataset_instrument_nid | String | 751347 |
attribute | NC_GLOBAL | instruments_0_description | String | The Isotope-ratio Mass Spectrometer is a particular type of mass spectrometer used to measure the relative abundance of isotopes in a given sample (e.g. VG Prism II Isotope Ratio Mass-Spectrometer). |
attribute | NC_GLOBAL | instruments_0_instrument_external_identifier | String | https://vocab.nerc.ac.uk/collection/L05/current/LAB16/ |
attribute | NC_GLOBAL | instruments_0_instrument_name | String | Isotope-ratio Mass Spectrometer |
attribute | NC_GLOBAL | instruments_0_instrument_nid | String | 469 |
attribute | NC_GLOBAL | instruments_0_supplied_name | String | Thermo Scientific Delta V Plus or Thermo Scientific MAT 253 IRMS |
attribute | NC_GLOBAL | instruments_1_acronym | String | MOCNESS |
attribute | NC_GLOBAL | instruments_1_dataset_instrument_description | String | Used to collect micronekton at specific depth strata. |
attribute | NC_GLOBAL | instruments_1_dataset_instrument_nid | String | 750994 |
attribute | NC_GLOBAL | instruments_1_description | String | The Multiple Opening/Closing Net and Environmental Sensing System or MOCNESS is a family of net systems based on the Tucker Trawl principle. There are currently 8 different sizes of MOCNESS in existence which are designed for capture of different size ranges of zooplankton and micro-nekton Each system is designated according to the size of the net mouth opening and in two cases, the number of nets it carries. The original MOCNESS (Wiebe et al, 1976) was a redesigned and improved version of a system described by Frost and McCrone (1974).(from MOCNESS manual) This designation is used when the specific type of MOCNESS (number and size of nets) was not specified by the contributing investigator. |
attribute | NC_GLOBAL | instruments_1_instrument_external_identifier | String | https://vocab.nerc.ac.uk/collection/L22/current/NETT0097/ |
attribute | NC_GLOBAL | instruments_1_instrument_name | String | MOCNESS |
attribute | NC_GLOBAL | instruments_1_instrument_nid | String | 511 |
attribute | NC_GLOBAL | instruments_2_acronym | String | Gas Chromatograph |
attribute | NC_GLOBAL | instruments_2_dataset_instrument_nid | String | 751350 |
attribute | NC_GLOBAL | instruments_2_description | String | Instrument separating gases, volatile substances, or substances dissolved in a volatile solvent by transporting an inert gas through a column packed with a sorbent to a detector for assay. (from SeaDataNet, BODC) |
attribute | NC_GLOBAL | instruments_2_instrument_external_identifier | String | https://vocab.nerc.ac.uk/collection/L05/current/LAB02/ |
attribute | NC_GLOBAL | instruments_2_instrument_name | String | Gas Chromatograph |
attribute | NC_GLOBAL | instruments_2_instrument_nid | String | 661 |
attribute | NC_GLOBAL | instruments_2_supplied_name | String | Thermo Finnigan GC-C III |
attribute | NC_GLOBAL | instruments_3_dataset_instrument_description | String | Used to measure carbon and nitrogen isotopic compositions. |
attribute | NC_GLOBAL | instruments_3_dataset_instrument_nid | String | 751348 |
attribute | NC_GLOBAL | instruments_3_description | String | Instruments that quantify carbon, nitrogen and sometimes other elements by combusting the sample at very high temperature and assaying the resulting gaseous oxides. Usually used for samples including organic material. |
attribute | NC_GLOBAL | instruments_3_instrument_external_identifier | String | https://vocab.nerc.ac.uk/collection/L05/current/LAB01/ |
attribute | NC_GLOBAL | instruments_3_instrument_name | String | Elemental Analyzer |
attribute | NC_GLOBAL | instruments_3_instrument_nid | String | 546339 |
attribute | NC_GLOBAL | instruments_3_supplied_name | String | Costech Model 4010 |
attribute | NC_GLOBAL | keywords | String | acid, air, alanine, arginine, aspartic, Aspartic_acid, bco, bco-dmo, biological, C_N_mol_mol, chemical, cruise, CruiseID, data, dataset, delta13, delta13C_ppt_v_VPDB, delta15, delta15N_ppt_v_AIR, dmo, erddap, family, FamilyID, glutamic, Glutamic_acid, glycine, histidine, isoleucine, length, Length_mm, Length_Type, leucine, lysine, management, methionine, mol, month, oceanography, office, phenylalanine, ppt, preliminary, proline, sample, Sample_site, serine, site, species, SpeciesID, specimen, SpecimenID, threonine, tissue, Tissue_Type, type, tyrosine, v, valine, vpdb, year |
attribute | NC_GLOBAL | license | String | https://www.bco-dmo.org/dataset/750972/license |
attribute | NC_GLOBAL | metadata_source | String | https://www.bco-dmo.org/api/dataset/750972 |
attribute | NC_GLOBAL | param_mapping | String | {'750972': {}} |
attribute | NC_GLOBAL | parameter_source | String | https://www.bco-dmo.org/mapserver/dataset/750972/parameters |
attribute | NC_GLOBAL | people_0_affiliation | String | University of Hawaii at Manoa |
attribute | NC_GLOBAL | people_0_affiliation_acronym | String | SOEST |
attribute | NC_GLOBAL | people_0_person_name | String | Brian N. Popp |
attribute | NC_GLOBAL | people_0_person_nid | String | 51093 |
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 | University of South Carolina at Columbia |
attribute | NC_GLOBAL | people_1_person_name | String | Claudia R. Benitez-Nelson |
attribute | NC_GLOBAL | people_1_person_nid | String | 51092 |
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 | University of Michigan |
attribute | NC_GLOBAL | people_2_person_name | String | Joel D. Blum |
attribute | NC_GLOBAL | people_2_person_nid | String | 560587 |
attribute | NC_GLOBAL | people_2_role | String | Co-Principal Investigator |
attribute | NC_GLOBAL | people_2_role_type | String | originator |
attribute | NC_GLOBAL | people_3_affiliation | String | University of Hawaii at Manoa |
attribute | NC_GLOBAL | people_3_affiliation_acronym | String | SOEST |
attribute | NC_GLOBAL | people_3_person_name | String | Jeffrey C. Drazen |
attribute | NC_GLOBAL | people_3_person_nid | String | 491313 |
attribute | NC_GLOBAL | people_3_role | String | Co-Principal Investigator |
attribute | NC_GLOBAL | people_3_role_type | String | originator |
attribute | NC_GLOBAL | people_4_affiliation | String | University of Hawaii at Manoa |
attribute | NC_GLOBAL | people_4_affiliation_acronym | String | SOEST |
attribute | NC_GLOBAL | people_4_person_name | String | Cecelia Hannides |
attribute | NC_GLOBAL | people_4_person_nid | String | 537126 |
attribute | NC_GLOBAL | people_4_role | String | Co-Principal Investigator |
attribute | NC_GLOBAL | people_4_role_type | String | originator |
attribute | NC_GLOBAL | people_5_affiliation | String | University of Hawaii at Manoa |
attribute | NC_GLOBAL | people_5_affiliation_acronym | String | SOEST |
attribute | NC_GLOBAL | people_5_person_name | String | Kanesa Seraphin |
attribute | NC_GLOBAL | people_5_person_nid | String | 537131 |
attribute | NC_GLOBAL | people_5_role | String | Co-Principal Investigator |
attribute | NC_GLOBAL | people_5_role_type | String | originator |
attribute | NC_GLOBAL | people_6_affiliation | String | Woods Hole Oceanographic Institution |
attribute | NC_GLOBAL | people_6_affiliation_acronym | String | WHOI BCO-DMO |
attribute | NC_GLOBAL | people_6_person_name | String | Nancy Copley |
attribute | NC_GLOBAL | people_6_person_nid | String | 50396 |
attribute | NC_GLOBAL | people_6_role | String | BCO-DMO Data Manager |
attribute | NC_GLOBAL | people_6_role_type | String | related |
attribute | NC_GLOBAL | project | String | Hg_Biogeochemistry |
attribute | NC_GLOBAL | projects_0_acronym | String | Hg_Biogeochemistry |
attribute | NC_GLOBAL | projects_0_description | String | NSF award abstract:\nMercury is a pervasive trace element that exists in several states in the marine environment, including monomethylmercury (MMHg), a neurotoxin that bioaccumulates in marine organisms and poses a human health threat. Understanding the fate of mercury in the ocean and resulting impacts on ocean food webs requires understanding the mechanisms controlling the depths at which mercury chemical transformations occur. Preliminary mercury analyses on nine species of marine fish from the North Pacific Ocean indicated that intermediate waters are an important entry point for MMHg into open ocean food webs. To elucidate the process controlling this, researchers will examine mercury dynamics in regions with differing vertical dissolved oxygen profiles, which should influence depths of mercury transformation. Results of the study will aid in a better understanding of the pathways by which mercury enters the marine food chain and can ultimately impact humans. This project will provide training for graduate and undergraduate students, and spread awareness on oceanic mercury through public outreach and informal science programs.\nMercury isotopic variations can provide insight into a wide variety of environmental processes. Isotopic compositions of mercury display mass-dependent fractionation (MDF) during most biotic and abiotic chemical reactions and mass-independent fractionation (MIF) during photochemical radical pair reactions. The unusual combination of MDF and MIF can provide information on reaction pathways and the biogeochemical history of mercury. Results from preliminary research provide strong evidence that net MMHg formation occurred below the surface mixed layer in the pycnocline and suggested that MMHg in low oxygen intermediate waters is an important entry point for mercury into open ocean food webs. These findings highlight the critical need to understand how MMHg levels in marine biota will respond to changes in atmospheric mercury emissions, deposition of inorganic mercury to the surface ocean, and hypothesized future expansion of oxygen minimum zones. Using field collections across ecosystems with contrasting biogeochemistry and mercury isotope fractionation experiments researchers will fill key knowledge gaps in mercury biogeochemistry. Results of the proposed research will enable scientists to assess the biogeochemical controls on where in the water column mercury methylation and demethylation likely occur.\nRelated background publication with supplemental data section:\nJoel D. Blum, Brian N. Popp, Jeffrey C. Drazen, C. Anela Choy & Marcus W. Johnson. 2013. Methylmercury production below the mixed layer in the North Pacific Ocean. Nature Geoscience 6, 879–884. doi:10.1038/ngeo1918 |
attribute | NC_GLOBAL | projects_0_end_date | String | 2017-07 |
attribute | NC_GLOBAL | projects_0_geolocation | String | Pacific Subtropical Gyre, Station ALOHA 22.75N 158W; equatorial Pacific (10N 155W, 5N 155W) |
attribute | NC_GLOBAL | projects_0_name | String | Collaborative Research: Isotopic insights to mercury in marine food webs and how it varies with ocean biogeochemistry |
attribute | NC_GLOBAL | projects_0_project_nid | String | 560580 |
attribute | NC_GLOBAL | projects_0_start_date | String | 2014-08 |
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 | This dataset contains amino acid compound specific concentrations in micronekton collected during R/V Kilo Moana cruises around the ALOHA observatory (KM1407, KM1418, KM2011, and a few other undocumented cruises). For more information about the ALOHA observatory see: http://aco-ssds.soest.hawaii.edu/. These data were published in Gloeckler et al (2018), Supporting Information file lno10762-sup-0001-suppinfo1.xlsx |
attribute | NC_GLOBAL | title | String | [Micronekton AA CSIA ALOHA: Amino acid specific isotopes in micronekton] - Amino acid compound specific isotope values for micronekton from R/V Kilo Moana KM1109, KM1123, KM1407, KM1418, and other cruises in the Central North Pacific, Station ALOHA, Tropical Pacific, 2007-2014 (Collaborative Research: Isotopic insights to mercury in marine food webs and how it varies with ocean biogeochemistry) |
attribute | NC_GLOBAL | version | String | 1 |
attribute | NC_GLOBAL | xml_source | String | osprey2erddap.update_xml() v1.3 |
variable | SpeciesID | String | ||
attribute | SpeciesID | bcodmo_name | String | species |
attribute | SpeciesID | description | String | Genus and species name of micronekton specimen |
attribute | SpeciesID | long_name | String | Species ID |
attribute | SpeciesID | units | String | unitless |
variable | FamilyID | String | ||
attribute | FamilyID | bcodmo_name | String | family |
attribute | FamilyID | description | String | Taxonomic family of micronekton specimen |
attribute | FamilyID | long_name | String | Family ID |
attribute | FamilyID | units | String | unitless |
variable | SpecimenID | String | ||
attribute | SpecimenID | bcodmo_name | String | sample |
attribute | SpecimenID | description | String | specimen identifier |
attribute | SpecimenID | long_name | String | Specimen ID |
attribute | SpecimenID | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/ACYC/ |
attribute | SpecimenID | units | String | unitless |
variable | Sample_site | String | ||
attribute | Sample_site | bcodmo_name | String | site |
attribute | Sample_site | description | String | specimen collection site |
attribute | Sample_site | long_name | String | Sample Site |
attribute | Sample_site | units | String | unitless |
variable | Year | short | ||
attribute | Year | _FillValue | short | 32767 |
attribute | Year | actual_range | short | 2007, 2014 |
attribute | Year | bcodmo_name | String | year |
attribute | Year | description | String | year of collection |
attribute | Year | long_name | String | Year |
attribute | Year | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/YEARXXXX/ |
attribute | Year | units | String | unitless |
variable | Month | String | ||
attribute | Month | bcodmo_name | String | month |
attribute | Month | description | String | month of collection |
attribute | Month | long_name | String | Month |
attribute | Month | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P01/current/MNTHXXXX/ |
attribute | Month | units | String | unitless |
variable | CruiseID | String | ||
attribute | CruiseID | bcodmo_name | String | cruise_id |
attribute | CruiseID | description | String | cruise identifier |
attribute | CruiseID | long_name | String | Cruise ID |
attribute | CruiseID | units | String | unitless |
variable | n | String | ||
attribute | n | bcodmo_name | String | number |
attribute | n | description | String | number of specimens in sample |
attribute | n | long_name | String | N |
attribute | n | units | String | individuals |
variable | Length_mm | String | ||
attribute | Length_mm | bcodmo_name | String | length |
attribute | Length_mm | description | String | length of specimen |
attribute | Length_mm | long_name | String | Length Mm |
attribute | Length_mm | units | String | millimeters |
variable | Length_Type | String | ||
attribute | Length_Type | bcodmo_name | String | unknown |
attribute | Length_Type | description | String | Length type is standard length (SL); total length (TL); carapace length (CL); fork length (FL); mantle length (ML) |
attribute | Length_Type | long_name | String | Length Type |
attribute | Length_Type | units | String | length |
variable | Tissue_Type | String | ||
attribute | Tissue_Type | bcodmo_name | String | sample_descrip |
attribute | Tissue_Type | description | String | Type of tissue samples taken: WMT = white muscle tissue; Whole = the whole specimen; |
attribute | Tissue_Type | long_name | String | Tissue Type |
attribute | Tissue_Type | units | String | sample_type |
variable | delta15N_ppt_v_AIR | float | ||
attribute | delta15N_ppt_v_AIR | _FillValue | float | NaN |
attribute | delta15N_ppt_v_AIR | actual_range | float | 1.3, 15.1 |
attribute | delta15N_ppt_v_AIR | bcodmo_name | String | d15N_bio |
attribute | delta15N_ppt_v_AIR | description | String | ratio of tissue 15N:14N isotopes relative to atmospheric N2 |
attribute | delta15N_ppt_v_AIR | long_name | String | Delta15 N Ppt V AIR |
attribute | delta15N_ppt_v_AIR | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/IRBO/ |
attribute | delta15N_ppt_v_AIR | units | String | permil |
variable | delta13C_ppt_v_VPDB | float | ||
attribute | delta13C_ppt_v_VPDB | _FillValue | float | NaN |
attribute | delta13C_ppt_v_VPDB | actual_range | float | -22.4, 17.3 |
attribute | delta13C_ppt_v_VPDB | bcodmo_name | String | d13C_bio |
attribute | delta13C_ppt_v_VPDB | description | String | ratio of tissue 13C:12C isotope relative to VPDB (Vienna Pee Dee Belemnite) |
attribute | delta13C_ppt_v_VPDB | long_name | String | Delta13 C Ppt V VPDB |
attribute | delta13C_ppt_v_VPDB | nerc_identifier | String | https://vocab.nerc.ac.uk/collection/P02/current/IRBO/ |
attribute | delta13C_ppt_v_VPDB | units | String | permil |
variable | C_N_mol_mol | float | ||
attribute | C_N_mol_mol | _FillValue | float | NaN |
attribute | C_N_mol_mol | actual_range | float | 2.05, 7.42 |
attribute | C_N_mol_mol | bcodmo_name | String | C_to_N |
attribute | C_N_mol_mol | description | String | Carbon to Nitrogen ratio |
attribute | C_N_mol_mol | long_name | String | C N Mol Mol |
attribute | C_N_mol_mol | units | String | unitless |
variable | Alanine | String | ||
attribute | Alanine | bcodmo_name | String | amino_conc |
attribute | Alanine | description | String | ratio of tissue Alanine isotopes relative to atmospheric N2 |
attribute | Alanine | long_name | String | Alanine |
attribute | Alanine | units | String | unitless |
variable | Glycine | String | ||
attribute | Glycine | bcodmo_name | String | amino_conc |
attribute | Glycine | description | String | ratio of tissue Glycine isotopes relative to atmospheric N2 |
attribute | Glycine | long_name | String | Glycine |
attribute | Glycine | units | String | unitless |
variable | Threonine | String | ||
attribute | Threonine | bcodmo_name | String | amino_conc |
attribute | Threonine | description | String | ratio of tissue Threonine isotopes relative to atmospheric N2 |
attribute | Threonine | long_name | String | Threonine |
attribute | Threonine | units | String | unitless |
variable | Serine | String | ||
attribute | Serine | bcodmo_name | String | amino_conc |
attribute | Serine | description | String | ratio of tissue Serine isotopes relative to atmospheric N2 |
attribute | Serine | long_name | String | Serine |
attribute | Serine | units | String | unitless |
variable | Valine | String | ||
attribute | Valine | bcodmo_name | String | amino_conc |
attribute | Valine | description | String | ratio of tissue Valine isotopes relative to atmospheric N2 |
attribute | Valine | long_name | String | Valine |
attribute | Valine | units | String | unitless |
variable | Leucine | String | ||
attribute | Leucine | bcodmo_name | String | amino_conc |
attribute | Leucine | description | String | ratio of tissue Leucine isotopes relative to atmospheric N2 |
attribute | Leucine | long_name | String | Leucine |
attribute | Leucine | units | String | unitless |
variable | Isoleucine | String | ||
attribute | Isoleucine | bcodmo_name | String | amino_conc |
attribute | Isoleucine | description | String | ratio of tissue Isoleucine isotopes relative to atmospheric N2 |
attribute | Isoleucine | long_name | String | Isoleucine |
attribute | Isoleucine | units | String | unitless |
variable | Proline | String | ||
attribute | Proline | bcodmo_name | String | amino_conc |
attribute | Proline | description | String | ratio of tissue Proline isotopes relative to atmospheric N2 |
attribute | Proline | long_name | String | Proline |
attribute | Proline | units | String | unitless |
variable | Aspartic_acid | String | ||
attribute | Aspartic_acid | bcodmo_name | String | amino_conc |
attribute | Aspartic_acid | description | String | ratio of tissue Aspartic_acid isotopes relative to atmospheric N2 |
attribute | Aspartic_acid | long_name | String | Aspartic Acid |
attribute | Aspartic_acid | units | String | unitless |
variable | Methionine | String | ||
attribute | Methionine | bcodmo_name | String | amino_conc |
attribute | Methionine | description | String | ratio of tissue Methionine isotopes relative to atmospheric N2 |
attribute | Methionine | long_name | String | Methionine |
attribute | Methionine | units | String | unitless |
variable | Glutamic_acid | String | ||
attribute | Glutamic_acid | bcodmo_name | String | amino_conc |
attribute | Glutamic_acid | description | String | ratio of tissue Glutamic_acid isotopes relative to atmospheric N2 |
attribute | Glutamic_acid | long_name | String | Glutamic Acid |
attribute | Glutamic_acid | units | String | unitless |
variable | Phenylalanine | String | ||
attribute | Phenylalanine | bcodmo_name | String | amino_conc |
attribute | Phenylalanine | description | String | ratio of tissue Phenylalanine isotopes relative to atmospheric N2 |
attribute | Phenylalanine | long_name | String | Phenylalanine |
attribute | Phenylalanine | units | String | unitless |
variable | Tyrosine | String | ||
attribute | Tyrosine | bcodmo_name | String | amino_conc |
attribute | Tyrosine | description | String | ratio of tissue Tyrosine isotopes relative to atmospheric N2 |
attribute | Tyrosine | long_name | String | Tyrosine |
attribute | Tyrosine | units | String | unitless |
variable | Lysine | String | ||
attribute | Lysine | bcodmo_name | String | amino_conc |
attribute | Lysine | description | String | ratio of tissue Lysine isotopes relative to atmospheric N2 |
attribute | Lysine | long_name | String | Lysine |
attribute | Lysine | units | String | unitless |
variable | Arginine | String | ||
attribute | Arginine | bcodmo_name | String | amino_conc |
attribute | Arginine | description | String | ratio of tissue Arginine isotopes relative to atmospheric N2 |
attribute | Arginine | long_name | String | Arginine |
attribute | Arginine | units | String | unitless |
variable | Histidine | String | ||
attribute | Histidine | bcodmo_name | String | amino_conc |
attribute | Histidine | description | String | ratio of tissue Histidine isotopes relative to atmospheric N2 |
attribute | Histidine | long_name | String | Histidine |
attribute | Histidine | units | String | unitless |