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Geostationary satellite observations of dynamic phytoplankton photophysiology

ScholarsArchive at Oregon State University

Field Value
Title Geostationary satellite observations of dynamic phytoplankton photophysiology
Names O'Malley, Robert T. (creator)
Behrenfeld, Michael J. (creator)
Westberry, Toby K. (creator)
Milligan, Allen J. (creator)
Shang, Shaoling (creator)
Yan, Jing (creator)
Date Issued 2014-07-17 (iso8601)
Note This is the publisher’s final pdf. The published article is copyrighted by the American Geophysical Union and can be found at: http://agupubs.onlinelibrary.wiley.com/agu/journal/10.1002/%28ISSN%291944-8007/.
Abstract Since June 2010, the Geostationary Ocean Color Imager (GOCI) has been collecting the first
diurnally resolved satellite ocean measurements. Here GOCI retrievals of phytoplankton chlorophyll
concentration and fluorescence are used to evaluate daily to seasonal changes in photophysiological
properties. We focus on nonphotochemical quenching (NPQ) processes that protect phytoplankton from
high light damage and cause strong diurnal cycles in fluorescence emission. This NPQ signal varies
seasonally, with maxima in winter and minima in summer. Contrary to expectations from laboratory studies
under constant light conditions, this pattern is highly consistent with an earlier conceptual model and recent
field observations. The same seasonal cycle is registered in fluorescence data from the polar-orbiting
Moderate Resolution Imaging Spectroradiometer Aqua satellite sensor. GOCI data reveal a strong correlation
between mixed layer growth irradiance and fluorescence-derived phytoplankton photoacclimation state that
can provide a path for mechanistically accounting for NPQ variability and, subsequently, retrieving information
on iron stress in global phytoplankton populations.
Genre Article
Topic GOCI fluorescence
Identifier O'Malley, R. T., Behrenfeld, M. J., Westberry, T. K., Milligan, A. J., Shang, S., & Yan, J. (2014). Geostationary satellite observations of dynamic phytoplankton photophysiology. Geophysical Research Letters, 41(14), 5052-5059. doi:10.1002/2014GL060246

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