Dataset: Series 4A: Multiple stressor experiments on the cyanobacteria Synechococcus elongatus CCMP1629 - computed photophysiology parameters

Release Date:2020-08-31Final no updates expectedDOI: 10.26008/1912/bco-dmo.808215.1Version 1 (2020-04-03)Dataset Type:experimental

Principal Investigator: Uta Passow (University of California-Santa Barbara)

Co-Principal Investigator: Edward Laws (Louisiana State University)

Scientist, Contact: Nigel D'Souza (University of California-Santa Barbara)

BCO-DMO Data Manager: Nancy Copley (Woods Hole Oceanographic Institution)


Project: Collaborative Research: Effects of multiple stressors on Marine Phytoplankton (Stressors on Marine Phytoplankton)


Abstract

The experiments were designed to test the combined effects of two CO2 concentrations, four temperatures, and three light intensities on growth and photophysiology of the cyanobacteria S. elongatus CCMP1629 in a multifactorial design. This dataset contains measurements of photophysiology using the Light curve (LC3) protocol of the Aquapen-C AP-C 100 fluorometer. They include the minimum fluorescence in dark-adapted state (Fo), the maximum fluorescence in dark-adapted state (Fm), the maximum Quant...

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The experiments were designed to test the combined effects of two CO2 concentrations, four temperatures, and three light intensities on growth and photophysiology of the cyanobacteria S. elongatus CCMP1629 in a multifactorial design. This dataset contains measurements of photophysiology using the Light curve (LC3) protocol of the Aquapen-C AP-C 100 fluorometer. They include the minimum fluorescence in dark-adapted state (Fo), the maximum fluorescence in dark-adapted state (Fm), the maximum Quantum yield (QY_max), measurements of the maximum fluorescence following exposure to actinic light (Fm_L#), the instantaneous fluorescence during light adaptation (Ft_L#), and measurements of the instantaneous photosystem II quantum yield following exposure to actinic light (QY_L#).

 


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