Author:
Listiawati Vina,Kurihara Haruko
Abstract
AbstractSeagrass ecosystem is one of the most productive ecosystems in coastal waters providing numerous ecological functions and supporting a large biodiversity. However, various anthropogenic stressors including climate change are impacting these vulnerable habitats. Here, we investigated the independent and combined effects of ocean warming and ocean acidification on plant–herbivore interactions in a tropical seagrass community. Direct and indirect effects of high temperature and high pCO2 on the physiology of the tropical seagrass Thalassia hemprichii and sea urchin Tripneustes gratilla were evaluated. Productivity of seagrass was found to increase under high pCO2, while sea urchin physiology including feeding rate decreased particularly under high temperature. The present study indicated that future climate change will affect the bottom-up and top-down balance, which potentially can modify the ecosystem functions and services of tropical seagrass ecosystems.
Funder
Japan Society for the Promotion of Science
Marine Pew Fellow
Publisher
Springer Science and Business Media LLC
Reference47 articles.
1. Duarte, C. M. & Chiscano, C. L. Seagrass biomass and production: A reassessment. Aquat. Bot. 65, 159–174 (1999).
2. Boon, P. I., Moriarty, D. J. W. & Saffigna, P. G. Rates of ammonium turnover and the role of amino-acid deamination in seagrass (Zostera capricorni) beds of Moreton Bay, Australia. Mar. Biol. 91, 259–268 (1986).
3. Smith, S. V. Marine macrophytes as a global carbon sink. Science 211, 838–840 (1981).
4. Scoffin, T. P. The trapping and binding of subtidal carbonate sediments by marine vegetation in Bimini Lagoon, Bahamas. J. Sediment. Res. 40, 249–273 (1970).
5. Robblee, M. B. & Zieman, J. C. Diel variation in the fish fauna of a tropical seagrass feeding ground. Bull. Mar. Sci. 34, 335–345 (1984).
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