<?xml version="1.0" encoding="UTF-8"?><resource xsi:schemaLocation="http://datacite.org/schema/kernel-4 http://schema.datacite.org/meta/kernel-4.3/metadata.xsd" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://datacite.org/schema/kernel-4"><identifier identifierType="DOI">10.1594/PANGAEA.995496</identifier><creators><creator><creatorName>Slesinger, Emily</creatorName><givenName>Emily</givenName><familyName>Slesinger</familyName><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/01h7fye62">Alaska Fisheries Science Center</affiliation></creator><creator><creatorName>Tyler, Erin F</creatorName><givenName>Erin F</givenName><familyName>Tyler</familyName><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/01h7fye62">Alaska Fisheries Science Center</affiliation><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/00ysfqy60">Oregon State University</affiliation></creator><creator><creatorName>Mundorff, Samantha</creatorName><givenName>Samantha</givenName><familyName>Mundorff</familyName><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/04t5xt781">NORTHEASTERN UNIV</affiliation></creator><creator><creatorName>Youn, Kathryn R</creatorName><givenName>Kathryn R</givenName><familyName>Youn</familyName><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/00yghrj63">Hendrix College</affiliation></creator><creator><creatorName>Edmondson, Leo</creatorName><givenName>Leo</givenName><familyName>Edmondson</familyName><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/02n2ava60">University of New England</affiliation></creator><creator><creatorName>Hurst, Thomas P</creatorName><givenName>Thomas P</givenName><familyName>Hurst</familyName><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/01h7fye62">Alaska Fisheries Science Center</affiliation></creator></creators><titles><title>Seawater carbonate chemistry and data collected from laboratory experiments on the tolerance of egg and yolk-sac larval yellowfin sole (Limanda aspera) to ocean warming and acidification</title></titles><publisher>PANGAEA</publisher><publicationYear>2026</publicationYear><subjects><subject>Animalia</subject><subject>Chordata</subject><subject>Coast and continental shelf</subject><subject>Containers and aquaria (20-1000 L or &lt; 1 m**2)</subject><subject>Growth/Morphology</subject><subject>Laboratory experiment</subject><subject>Limanda aspera</subject><subject>Mortality/Survival</subject><subject>Nekton</subject><subject>North Pacific</subject><subject>Ocean acidification</subject><subject>Other metabolic rates</subject><subject>Pelagos</subject><subject>Reproduction</subject><subject>Respiration</subject><subject>Single species</subject><subject>Temperate</subject><subject>Temperature</subject><subject subjectScheme="Parameter">Type of study</subject><subject subjectScheme="Parameter">Species, unique identification</subject><subject subjectScheme="Parameter">Species, unique identification (Semantic URI)</subject><subject subjectScheme="Parameter">Species, unique identification (URI)</subject><subject subjectScheme="Parameter">Identification</subject><subject subjectScheme="Parameter">Treatment: temperature</subject><subject subjectScheme="Parameter">Treatment</subject><subject subjectScheme="Parameter">Stage</subject><subject subjectScheme="Parameter">Temperature, water</subject><subject subjectScheme="Parameter">Partial pressure of carbon dioxide (water) at sea surface temperature (wet air)</subject><subject subjectScheme="Parameter">Citrate synthase activity, unit per protein mass</subject><subject subjectScheme="Parameter">b-hydroxyacyl-CoA dehydrogenase activity, unit per protein mass</subject><subject subjectScheme="Parameter">Lactate dehydrogenase activity, unit per protein mass</subject><subject subjectScheme="Parameter">Degree days</subject><subject subjectScheme="Parameter">Fish, standard length</subject><subject subjectScheme="Parameter">Fish, standard length, standard deviation</subject><subject subjectScheme="Parameter">Myotome height</subject><subject subjectScheme="Parameter">Myotome height, standard deviation</subject><subject subjectScheme="Parameter">Dry mass</subject><subject subjectScheme="Parameter">Dry mass, standard deviation</subject><subject subjectScheme="Parameter">Yolk area</subject><subject subjectScheme="Parameter">Yolk area, standard deviation</subject><subject subjectScheme="Parameter">Growth rate</subject><subject subjectScheme="Parameter">Yolk absorption rate</subject><subject subjectScheme="Parameter">Daily mortality rate</subject><subject subjectScheme="Parameter">Batch</subject><subject subjectScheme="Parameter">Oxygen consumption per individual</subject><subject subjectScheme="Parameter">Salinity</subject><subject subjectScheme="Parameter">Salinity, standard deviation</subject><subject subjectScheme="Parameter">Oxygen</subject><subject subjectScheme="Parameter">Oxygen, standard deviation</subject><subject subjectScheme="Parameter">Temperature, water, standard deviation</subject><subject subjectScheme="Parameter">Carbon, inorganic, dissolved</subject><subject subjectScheme="Parameter">Carbon, inorganic, dissolved, standard deviation</subject><subject subjectScheme="Parameter">Alkalinity, total</subject><subject subjectScheme="Parameter">Alkalinity, total, standard deviation</subject><subject subjectScheme="Parameter">pH, total scale</subject><subject subjectScheme="Parameter">pH, standard deviation</subject><subject subjectScheme="Parameter">Partial pressure of carbon dioxide, standard deviation</subject><subject subjectScheme="Parameter">Carbonate system computation flag</subject><subject subjectScheme="Parameter">Carbon dioxide</subject><subject subjectScheme="Parameter">Carbon dioxide, standard deviation</subject><subject subjectScheme="Parameter">Fugacity of carbon dioxide (water) at sea surface temperature (wet air)</subject><subject subjectScheme="Parameter">Fugacity of carbon dioxide in seawater, standard deviation</subject><subject subjectScheme="Parameter">Bicarbonate ion</subject><subject subjectScheme="Parameter">Bicarbonate ion, standard deviation</subject><subject subjectScheme="Parameter">Carbonate ion</subject><subject subjectScheme="Parameter">Carbonate ion, standard deviation</subject><subject subjectScheme="Parameter">Aragonite saturation state</subject><subject subjectScheme="Parameter">Aragonite saturation state, standard deviation</subject><subject subjectScheme="Parameter">Calcite saturation state</subject><subject subjectScheme="Method">Calculated using seacarb after Nisumaa et al. (2010)</subject><subject subjectScheme="Method">Calculated using seacarb after Orr et al. (2018)</subject><subject subjectScheme="Project">Ocean Acidification International Coordination Centre (OA-ICC)</subject></subjects><contributors><contributor contributorType="DataCollector"><contributorName>Yang, Yan</contributorName><givenName>Yan</givenName><familyName>Yang</familyName><nameIdentifier schemeURI="http://orcid.org/" nameIdentifierScheme="ORCID">0000-0003-4900-5606</nameIdentifier></contributor></contributors><resourceType resourceTypeGeneral="Dataset">Dataset</resourceType><relatedIdentifiers><relatedIdentifier relatedIdentifierType="DOI" relationType="References">10.1111/fog.70040</relatedIdentifier><relatedIdentifier relatedIdentifierType="DOI" relationType="IsDerivedFrom">10.25921/CVEC-SA43</relatedIdentifier><relatedIdentifier relatedIdentifierType="DOI" relationType="References">10.5194/essd-2-167-2010</relatedIdentifier><relatedIdentifier relatedIdentifierType="DOI" relationType="References">10.5194/essd-16-3771-2024</relatedIdentifier><relatedIdentifier relatedIdentifierType="DOI" relationType="References">10.5194/essd-8-79-2016</relatedIdentifier><relatedIdentifier relatedIdentifierType="URL" relationType="References">https://cran.r-project.org/web/packages/seacarb/index.html</relatedIdentifier></relatedIdentifiers><sizes><size>25413 data points</size></sizes><formats><format>text/tab-separated-values</format></formats><rightsList><rights rightsURI="https://creativecommons.org/licenses/by/4.0/" schemeURI="https://spdx.org/licenses/" rightsIdentifierScheme="SPDX" rightsIdentifier="CC-BY-4.0">Creative Commons Attribution 4.0 International</rights></rightsList><descriptions><description descriptionType="Abstract">This dataset contains laboratory experiment data that were collected to investigate the tolerance of egg and yolk-sac larval yellowfin sole (Limanda aspera) to ocean warming and acidification. Across four independent trials, yellowfin sole embryos and larvae were incubated at one of six experimental treatments spanning three temperatures (9, 12, 15°C) and two pCO2 target levels (low; high), and a range of organismal and physiological responses were measured. Embryonic daily mortality rates and metabolic rates increased with increasing temperature but were not affected by ocean acidification. At hatch and at yolk absorption, morphometric measurements (length, dry weight, myotome height, yolk area) were temperature-sensitive, but the response differed across the four trials. There was a consistent increase in length-based growth and yolk absorption rates with increasing temperature across trials. All morphometric and rate-based measurements were not affected by ocean acidification. Yellowfin sole metabolic enzyme activities were measured at yolk absorption. Lactate dehydrogenase (anaerobic metabolism) and β-hydroxyacyl CoA dehydrogenase (fatty acid metabolism) both increased with increasing temperature, indicating elevated energy demand. Citrate synthase (aerobic metabolism) declined with increasing pCO2 levels, indicating potential metabolic suppression. Overall, embryonic and larval yellowfin sole demonstrated relatively high tolerance to ocean warming and acidification.<br/>This dataset is included in the OA-ICC data compilation maintained in the framework of the IAEA Ocean Acidification International Coordination Centre (see https://oa-icc.ipsl.fr). Original data were downloaded from NOAA National Centers for Environmental Information (see Source) by the OA-ICC data curator. In order to allow full comparability with other ocean acidification data sets, the R package seacarb (Gattuso et al, 2024) was used to compute a complete and consistent set of carbonate system variables, as described by Nisumaa et al. (2010). In this dataset the original values were archived in addition with the recalculated parameters (see related PI). The date of carbonate chemistry calculation by seacarb is 2026-06-16.</description></descriptions></resource>