Ocean acidification causes no detectable effect on swimming activity and body size in a common copepod
Author:
Funder
Suomen Akatemia
Victoriastiftelsen
Svenska Forskningsrådet Formas
Walter ja Andrée de Nottbeckin Säätiö
Publisher
Springer Science and Business Media LLC
Subject
Aquatic Science
Link
http://link.springer.com/article/10.1007/s10750-017-3273-5/fulltext.html
Reference55 articles.
1. Almén, A.-K., A. Vehmaa, A. Brutemark & J. Engström-Öst, 2014. Coping with climate change? Copepods experience drastic variations in their physicochemical environment on a diurnal basis. Journal of Experimental Marine Biology and Ecology 460: 120–128.
2. Almén, A.-K., A. Vehmaa, A. Brutemark, L. Bach, S. Lischka, A. Stuhr, et al., 2016. Negligible effects of ocean acidification on Eurytemora affinis (Copepoda) offspring production. Biogeosciences 13: 1037–1048.
3. Bach, L. T., J. Taucher, T. Boxhammer, A. Ludwig, The Kristineberg KOSMOS Consortium, E. P. Achterberg, et al., 2016. Influence of ocean acidification on a natural winter-to-summer plankton succession: first insights from a long-term mesocosm study draw attention to periods of low nutrient concentrations. PLoS ONE 11(8): e0159068.
4. Bradley, C. J., J. R. Strickler, E. J. Buskey & P. H. Lenz, 2013. Swimming and escape behavior in two species of calanoid copepods from nauplius to adult. Journal of Plankton Research 35: 49–65.
5. Briffa, M., K. de la Haye & P. L. Munday, 2012. High CO2 and marine animal behaviour: potential mechanisms and ecological consequences. Marine Pollution Bulletin 64: 1519–1528.
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