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Variability in the phytoplankton response to upwelling across an iron limitation mosaic within the California Current System

YuanYu Lin, Olivia Torano, Logan Whitehouse, Emily Pierce, Claire P. Till, Matthew Hurst, Robert Freiberger, Travis Mellett, Maria T. Maldonado, Jian Guo, Mariam Sutton, David Zeitz, Adrian Marchetti
doi: https://doi.org/10.1101/2023.09.22.558967
YuanYu Lin
1Department of Earth, Marine, and Environmental Sciences, University of North Carolina, Chapel Hill, NC, USA
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Olivia Torano
1Department of Earth, Marine, and Environmental Sciences, University of North Carolina, Chapel Hill, NC, USA
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Logan Whitehouse
1Department of Earth, Marine, and Environmental Sciences, University of North Carolina, Chapel Hill, NC, USA
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Emily Pierce
1Department of Earth, Marine, and Environmental Sciences, University of North Carolina, Chapel Hill, NC, USA
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Claire P. Till
2Department of Chemistry, California State Polytechnic University, Humboldt, Arcata CA, USA
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Matthew Hurst
2Department of Chemistry, California State Polytechnic University, Humboldt, Arcata CA, USA
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Robert Freiberger
2Department of Chemistry, California State Polytechnic University, Humboldt, Arcata CA, USA
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Travis Mellett
3School of Oceanography, University of Washington, Seattle WA, USA
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Maria T. Maldonado
4Department of Earth, Ocean, and Atmospheric Sciences, University of British Columbia, Vancouver BC, Canada
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Jian Guo
4Department of Earth, Ocean, and Atmospheric Sciences, University of British Columbia, Vancouver BC, Canada
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Mariam Sutton
1Department of Earth, Marine, and Environmental Sciences, University of North Carolina, Chapel Hill, NC, USA
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David Zeitz
5Department of Chemistry and Biochemistry, University of California, Santa Cruz, Santa Cruz CA, USA
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Adrian Marchetti
1Department of Earth, Marine, and Environmental Sciences, University of North Carolina, Chapel Hill, NC, USA
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  • For correspondence: amarchetti@unc.edu
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Abstract

Coastal upwelling currents such as the California Current System (CCS) comprise some of the most productive biological systems on the planet. Diatoms, a distinct taxon of phytoplankton, dominate these upwelling events in part due to their rapid response to nutrient entrainment. In this region, they may also be limited by the micronutrient iron (Fe), an important trace element primarily involved in photosynthesis and nitrogen assimilation. The mechanisms behind how diatoms physiologically acclimate to the different stages of the upwelling conveyor belt cycle with respect to Fe limitation remains largely uncharacterized. Here, we explore their physiological and metatranscriptomic response to the upwelling cycle with respect to the Fe limitation mosaic that exists in the CCS. Subsurface, natural plankton assemblages that would potentially seed surface blooms were examined over wide and narrow shelf regions. The initial biomass and physiological state of the phytoplankton community had a large impact on the overall response to simulated upwelling. Following on-deck incubation under varying Fe physiological states, our results suggest that diatoms quickly dominated the blooms by “frontloading” nitrogen assimilation genes prior to upwelling. However, diatoms subjected to induced Fe limitation exhibited reductions in carbon and nitrogen uptake and decreasing biomass accumulation. Simultaneously, they exhibited a distinct gene expression response which included increased expression of Fe-starvation induced proteins and decreased expression of nitrogen assimilation and photosynthesis genes. These findings may have significant implications for upwelling events in future oceans, where changes in ocean conditions are projected to amplify the gradient of Fe limitation in coastal upwelling regions.

Competing Interest Statement

The authors have declared no competing interest.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted September 23, 2023.
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Variability in the phytoplankton response to upwelling across an iron limitation mosaic within the California Current System
YuanYu Lin, Olivia Torano, Logan Whitehouse, Emily Pierce, Claire P. Till, Matthew Hurst, Robert Freiberger, Travis Mellett, Maria T. Maldonado, Jian Guo, Mariam Sutton, David Zeitz, Adrian Marchetti
bioRxiv 2023.09.22.558967; doi: https://doi.org/10.1101/2023.09.22.558967
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Variability in the phytoplankton response to upwelling across an iron limitation mosaic within the California Current System
YuanYu Lin, Olivia Torano, Logan Whitehouse, Emily Pierce, Claire P. Till, Matthew Hurst, Robert Freiberger, Travis Mellett, Maria T. Maldonado, Jian Guo, Mariam Sutton, David Zeitz, Adrian Marchetti
bioRxiv 2023.09.22.558967; doi: https://doi.org/10.1101/2023.09.22.558967

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