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Impacts of reduced inorganic N:P ratio on three distinct plankton communities in the Humboldt upwelling system

Kristian Spilling, Maria-Teresa Camarena-Gómez, Tobias Lipsewers, Alícia Martinez-Varela, Francisco Díaz-Rosas, Eeva Eronen-Rasimus, Nelson Silva, Peter von Dassow, Vivian Montecino
doi: https://doi.org/10.1101/550046
Kristian Spilling
1Finnish Environment Institute, Marine Research Centre, P.O. Box 140, 00251 Helsinki, Finland
2Tvärminne Zoological Station, University of Helsinki, J. A. Palménin tie 260, 10900 Hanko, Finland
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Maria-Teresa Camarena-Gómez
2Tvärminne Zoological Station, University of Helsinki, J. A. Palménin tie 260, 10900 Hanko, Finland
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Tobias Lipsewers
1Finnish Environment Institute, Marine Research Centre, P.O. Box 140, 00251 Helsinki, Finland
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Alícia Martinez-Varela
3Department of Environmental Chemistry, Institute of Environmental Assessment and Water Research, IDAEA-CSIC; Barcelona, Catalunya, Spain
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Francisco Díaz-Rosas
4Departamento de Ecología, Facutlad de Ciencias Biológicas, Universidad de Catolica de Chile, Avenida Libertador Bernardo O’Higgins #340, Santiago, Chile
5Instituto Milenio de Oceanografía de Chile (IMO), Concepción, Chile
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Eeva Eronen-Rasimus
1Finnish Environment Institute, Marine Research Centre, P.O. Box 140, 00251 Helsinki, Finland
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Nelson Silva
6Escuela de Ciencias del Mar. Pontificia Universidad Católica de Valparaíso. P.O. Box 1020 Valparaíso. Chile
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Peter von Dassow
4Departamento de Ecología, Facutlad de Ciencias Biológicas, Universidad de Catolica de Chile, Avenida Libertador Bernardo O’Higgins #340, Santiago, Chile
5Instituto Milenio de Oceanografía de Chile (IMO), Concepción, Chile
7UMI 3614 Evolutionary Biology and Ecology of Algae, CNRS, Sorbonne Universités UPMC Univ. Paris 06, Pontificia Universidad Católica de Chile, Universidad Austral de Chile, Chile
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Vivian Montecino
8Departamento de Ciencias Ecológicas, Facultad de Ciencias, Universidad de Chile. Las Palmeras 345, Santiago, Chile
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Abstract

The ratio of inorganic nitrogen to phosphorus (NP) is projected to decrease in the Eastern Boundary Upwelling Systems (EBUS) due to warming of the surface waters. In an enclosure experiment, we employed two levels of NP ratios (10 and 5) for three distinct plankton communities collected along the coast of central Chile (33°S). The primary effect of the NP treatment was related to different concentrations of NO3, which directly influenced the biomass of phytoplankton. Additionally, low inorganic NP ratio reduced the seston NP and Chl a-C ratios, and there were some effects on the plankton community composition, e.g. benefitting Synechococcus spp in some communities. One of the communities was clearly top down controlled and trophic transfer to grazers was up to 5.8% during the 12 day experiment. Overall, the initial plankton community composition was more important for seston stoichiometry and trophic transfer than the inorganic NP ratio. Any long term change in the plankton community structure will likely have greater impact than direct effects of a decreasing inorganic NP ratio on the Humboldt Current ecosystem.

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Posted February 14, 2019.
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Impacts of reduced inorganic N:P ratio on three distinct plankton communities in the Humboldt upwelling system
Kristian Spilling, Maria-Teresa Camarena-Gómez, Tobias Lipsewers, Alícia Martinez-Varela, Francisco Díaz-Rosas, Eeva Eronen-Rasimus, Nelson Silva, Peter von Dassow, Vivian Montecino
bioRxiv 550046; doi: https://doi.org/10.1101/550046
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Impacts of reduced inorganic N:P ratio on three distinct plankton communities in the Humboldt upwelling system
Kristian Spilling, Maria-Teresa Camarena-Gómez, Tobias Lipsewers, Alícia Martinez-Varela, Francisco Díaz-Rosas, Eeva Eronen-Rasimus, Nelson Silva, Peter von Dassow, Vivian Montecino
bioRxiv 550046; doi: https://doi.org/10.1101/550046

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