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Ocean acidification effects on mesozooplankton community development: results from a long-term mesocosm experiment

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posted on 2023-05-20, 05:17 authored by Alguero-Muniz, M, Alvarez-Fernandez, S, Thor, P, Lennart BachLennart Bach, Esposito, M, Horn, HG, Ecker, U, Langer, JAF, Taucher, J, Malzahn, AM, Riebesell, U, Boersma, M
<p>Ocean acidification may affect zooplankton directly by decreasing in pH, as well as indirectly via trophic pathways, where changes in carbon availability or pH effects on primary producers may cascade up the food web thereby altering ecosystem functioning and community composition. Here, we present results from a mesocosm experiment carried out during 113 days in the Gullmar Fjord, Skagerrak coast of Sweden, studying plankton responses to predicted end-of-century <em>p</em>CO<sub>2</sub> levels. We did not observe any <em>p</em>CO<sub>2</sub> effect on the diversity of the mesozooplankton community, but a positive <em>p</em>CO<sub>2</sub> effect on the total mesozooplankton abundance. Furthermore, we observed species-specific sensitivities to <em>p</em>CO<sub>2</sub> in the two major groups in this experiment, copepods and hydromedusae. Also stage-specific <em>p</em>CO<sub>2</sub> sensitivities were detected in copepods, with copepodites being the most responsive stage. Focusing on the most abundant species, <em>Pseudocalanus acuspes</em>, we observed that copepodites were significantly more abundant in the high-<em>p</em>CO<sub>2</sub> treatment during most of the experiment, probably fuelled by phytoplankton community responses to high-<em>p</em>CO<sub>2</sub> conditions. Physiological and reproductive output was analysed on <em>P</em>. <em>acuspes</em> females through two additional laboratory experiments, showing no <em>p</em>CO<sub>2</sub> effect on females’ condition nor on egg hatching. Overall, our results suggest that the Gullmar Fjord mesozooplankton community structure is not expected to change much under realistic end-of-century OA scenarios as used here. However, the positive <em>p</em>CO<sub>2</sub> effect detected on mesozooplankton abundance could potentially affect biomass transfer to higher trophic levels in the future.</p>

History

Publication title

PLoS ONE

Volume

12

Issue

4

Article number

e0175851

Number

e0175851

Pagination

1-21

ISSN

1932-6203

Department/School

Institute for Marine and Antarctic Studies

Publisher

Public Library of Science

Place of publication

United States

Rights statement

Copyright 2017 Alguero-Muniz et al. Licensed under Creative Commons Attribution 4.0 International (CC BY 4.0) https://creativecommons.org/licenses/by/4.0/

Socio-economic Objectives

Expanding knowledge in the earth sciences

Repository Status

  • Open

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