Respirometry (MO2) in embryonic Pacific herring ...

These data were collected at Shannon Point Marine Center in Washington, U.S.A. in March, 2021. Embryos were reared at either 10C (ambient), 12C, 14C, or 16C and at either ~500 pCO2 uatm (ambient) or ~2000 pCO2 uatm (heightened). These data measure the oxygen consumption rates (MO2) response of winte...

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Bibliographic Details
Main Authors: Singh, Nicole, Love, Brooke, Murray, Christopher, Sobocinski, Kathryn, Cooper, W. James
Format: Dataset
Language:unknown
Published: SEANOE 2021
Subjects:
Online Access:https://dx.doi.org/10.17882/96698
https://www.seanoe.org/data/00855/96698/
id ftdatacite:10.17882/96698
record_format openpolar
spelling ftdatacite:10.17882/96698 2024-02-04T10:03:29+01:00 Respirometry (MO2) in embryonic Pacific herring ... Singh, Nicole Love, Brooke Murray, Christopher Sobocinski, Kathryn Cooper, W. James 2021 https://dx.doi.org/10.17882/96698 https://www.seanoe.org/data/00855/96698/ unknown SEANOE Creative Commons Zero v1.0 Universal https://creativecommons.org/publicdomain/zero/1.0/legalcode cc0-1.0 oxygen consumption rates Pacific herring ocean acidification temperature rise forage fishes Dataset dataset 2021 ftdatacite https://doi.org/10.17882/96698 2024-01-05T03:34:09Z These data were collected at Shannon Point Marine Center in Washington, U.S.A. in March, 2021. Embryos were reared at either 10C (ambient), 12C, 14C, or 16C and at either ~500 pCO2 uatm (ambient) or ~2000 pCO2 uatm (heightened). These data measure the oxygen consumption rates (MO2) response of winter-spawned Pacific herring embryos to variations in rearing temperature and pCO2 levels. The results evaluate if rearing conditions affect survival during a marine heatwave and the CTmax temperature and duration at which survival diminishes. ... Dataset Ocean acidification DataCite Metadata Store (German National Library of Science and Technology) Pacific Shannon Point ENVELOPE(-35.965,-35.965,-54.866,-54.866)
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language unknown
topic oxygen consumption rates
Pacific herring
ocean acidification
temperature rise
forage fishes
spellingShingle oxygen consumption rates
Pacific herring
ocean acidification
temperature rise
forage fishes
Singh, Nicole
Love, Brooke
Murray, Christopher
Sobocinski, Kathryn
Cooper, W. James
Respirometry (MO2) in embryonic Pacific herring ...
topic_facet oxygen consumption rates
Pacific herring
ocean acidification
temperature rise
forage fishes
description These data were collected at Shannon Point Marine Center in Washington, U.S.A. in March, 2021. Embryos were reared at either 10C (ambient), 12C, 14C, or 16C and at either ~500 pCO2 uatm (ambient) or ~2000 pCO2 uatm (heightened). These data measure the oxygen consumption rates (MO2) response of winter-spawned Pacific herring embryos to variations in rearing temperature and pCO2 levels. The results evaluate if rearing conditions affect survival during a marine heatwave and the CTmax temperature and duration at which survival diminishes. ...
format Dataset
author Singh, Nicole
Love, Brooke
Murray, Christopher
Sobocinski, Kathryn
Cooper, W. James
author_facet Singh, Nicole
Love, Brooke
Murray, Christopher
Sobocinski, Kathryn
Cooper, W. James
author_sort Singh, Nicole
title Respirometry (MO2) in embryonic Pacific herring ...
title_short Respirometry (MO2) in embryonic Pacific herring ...
title_full Respirometry (MO2) in embryonic Pacific herring ...
title_fullStr Respirometry (MO2) in embryonic Pacific herring ...
title_full_unstemmed Respirometry (MO2) in embryonic Pacific herring ...
title_sort respirometry (mo2) in embryonic pacific herring ...
publisher SEANOE
publishDate 2021
url https://dx.doi.org/10.17882/96698
https://www.seanoe.org/data/00855/96698/
long_lat ENVELOPE(-35.965,-35.965,-54.866,-54.866)
geographic Pacific
Shannon Point
geographic_facet Pacific
Shannon Point
genre Ocean acidification
genre_facet Ocean acidification
op_rights Creative Commons Zero v1.0 Universal
https://creativecommons.org/publicdomain/zero/1.0/legalcode
cc0-1.0
op_doi https://doi.org/10.17882/96698
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