Browning, nutrient inputs, and fast vertical mixing from simulated extreme rainfall and wind stress alter estuarine phytoplankton productivity

Author:

Helbling E. Walter12ORCID,Banaszak Anastazia T.3ORCID,Valiñas Macarena S.12ORCID,Vizzo Juan I.12ORCID,Villafañe Virginia E.12ORCID,Cabrerizo Marco J.456ORCID

Affiliation:

1. Estación de Fotobiología Playa Unión 9103 Chubut Rawson Casilla de Correos 15 Argentina

2. Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) Buenos Aires Argentina

3. Integrative Reef Conservation Research Laboratory, Unidad Académica de Sistemas Arrecifales, Instituto de Ciencias del Mar y Limnología Universidad Nacional Autónoma de México Prol. Av. Niños Héroes S/N Puerto Morelos CP 77580 Mexico

4. Departamento de Ecología y Biología Animal, Facultad de Ciencias del Mar Universidad de Vigo Campus Lagoas Marcosende, s/n Vigo 36310 Spain

5. Centro de Investigación Mariña da Universidade de Vigo (CIM‐UVigo) Illa de Toralla s/n Vigo 36331 Spain

6. Departamento de Ecología, Facultad de Ciencias Universidad de Granada Campus de Fuentenueva s/n Granada 18071 Spain

Abstract

Summary Browning and nutrient inputs from extreme rainfall, together with increased vertical mixing due to strong winds, are more frequent in coastal ecosystems; however, their interactive effects on phytoplankton are poorly understood. We conducted experiments to quantify how browning, together with different mixing speeds (fluctuating radiation), and a nutrient pulse alter primary productivity and photosynthetic efficiency in estuarine phytoplankton communities. Phytoplankton communities (grazers excluded) were exposed simultaneously to these drivers, and key photosynthetic targets were quantified: oxygen production, electron transport rates (ETRs), and carbon fixation immediately following collection and after a 2‐d acclimation/adaptation period. Increasing mixing speeds in a turbid water column (e.g. browning) significantly decreased ETRs and carbon fixation in the short term. Acclimation/adaptation to this condition for 2 d resulted in an increase in nanoplanktonic diatoms and a community that was photosynthetically more efficient; however, this did not revert the decreasing trend in carbon fixation with increased mixing speed. The observed interactive effects (resulting from extreme rainfall and strong winds) may have profound implications in the trophodynamics of highly productive system such as the Southwest Atlantic Ocean due to changes in the size structure of the community and reduced productivity.

Publisher

Wiley

Subject

Plant Science,Physiology

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