Dataset: Ehux elemental composition across thermal range
Data Citation:
Hutchins, D. (2020) Elemental stoichiometry for Emiliania huxleyi across a range of 12 temperatures from 8.5-28.6C. Biological and Chemical Oceanography Data Management Office (BCO-DMO). (Version 1) Version Date 2019-11-26 [if applicable, indicate subset used]. doi:10.26008/1912/bco-dmo.782921.1 [access date]
Terms of Use
This dataset is licensed under Creative Commons Attribution 4.0.
If you wish to use this dataset, it is highly recommended that you contact the original principal investigators (PI). Should the relevant PI be unavailable, please contact BCO-DMO (info@bco-dmo.org) for additional guidance. For general guidance please see the BCO-DMO Terms of Use document.
DOI:10.26008/1912/bco-dmo.782921.1
View, Subset and Download Data
BCO-DMO is preparing to move to a new data access system that provides more functionality and features. This system, called ERDDAP, is free and open source with a strong and growing user community. Currently, we are providing the following data access and download capabilities for datasets as we work through our legacy data holdings. These capabilities will soon be available for all data at BCO-DMO:Data Access
- - view the data in an HTML table
- - filter the data before viewing or downloading in a variety of formats
- - download the data with comma-separated values (Excel-ready)
- - download the data with tab-separated values (Excel-ready)
- - download the data as GeoJSON. Try it out at geojson.io
- - download the data as a valid MATLAB file
- - download the data in NetCDF format
- - download the data in Ocean Data View format
Give Us Feedback
Do you have thoughts, questions or constructive feedback about data access at BCO-DMO? Let us know: feedback [at] bco-dmo [dot] org
Temporal Extent: 2017-01-01 - 2017-10-31
Project:
How does intensity and frequency of environmental variability affect phytoplankton growth?
(Enviro variability and phytoplankton growth)
Principal Investigator:
David A. Hutchins (University of Southern California, USC)
BCO-DMO Data Manager:
Nancy Copley (Woods Hole Oceanographic Institution, WHOI BCO-DMO)
Version:
1
Version Date:
2019-11-26
Restricted:
No
Validated:
No
Current State:
Final no updates expected
Elemental stoichiometry for Emiliania huxleyi across a range of 12 temperatures from 8.5-28.6C
Abstract:
This dataset includes elemental stoichiometry for Emiliania huxleyi across a range of 12 temperatures from 8.5-28.6C. Global warming will be combined with predicted increases in thermal variability in the future surface ocean, but how temperature dynamics will affect phytoplankton biology and biogeochemistry is largely unknown. Here, we examine the responses of the globally important marine coccolithophore Emiliania huxleyi to thermal variations at two frequencies (1 d and 2 d) at low (18.5 °C) and high (25.5 °C) mean temperatures. Elevated temperature and thermal variation decreased growth, calcification and physiological rates, both individually and interactively. The 1 d thermal variation frequencies were less inhibitory than 2 d variations under high temperatures, indicating that high-frequency thermal fluctuations may reduce heat-induced mortality and mitigate some impacts of extreme high-temperature events. Cellular elemental composition and calcification was significantly affected by both thermal variation treatments relative to each other and to the constant temperature controls. The negative effects of thermal variation on E. huxleyi growth rate and physiology are especially pronounced at high temperatures. These responses of the key marine calcifier E. huxleyi to warmer, more variable temperature regimes have potentially large implications for ocean productivity and marine biogeochemical cycles under a future changing climate.