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Interactive effects of pH,temperature and light during ammonia toxicity events in Elodea canadensis
Authors:Jordie J.C. Netten  Tjisse van der Heide  Alfons J.P. Smolders
Affiliation:1. Aquatic Ecology and Water Quality Management Group , Wageningen University and Research Centre , P.O. Box 47, Wageningen , 6700 AA , The Netherlands jordienetten@gmail.com;3. Department of Environmental Biology , Radboud University Nijmegen, Institute for Wetland &4. Water Research , P.O. Box 9010, Nijmegen , 6500 GL , The Netherlands
Abstract:Increased nutrient loading threatens many freshwater ecosystems. Elevated temperatures may increase the sensitivity to eutrophication in these ecosystems. Higher concentrations of possibly toxic reduced nitrogen (NH x ) in the water layer may be expected as production and anaerobic breakdown rates will increase. Apart from temperature, NH x and its effect on aquatic macrophytes will also depend on pH and light. We examined the interactive effects of NH x , temperature, pH and light on Elodea canadensis in a full factorial laboratory experiment. Results demonstrate that high NH x and high temperature together with low pH and low light causes the strongest toxic effects regarding relative growth rate and leaf tissue mortality. The adverse effects of high temperature and low light are most likely caused by increased metabolic activity and reduced photosynthesis, respectively. Severe toxicity at low pH compared to high pH can be ascribed to the ability of E. canadensis to induce a specialised bicarbonate-concentrating pathway at high pH, resulting in much higher carbon availability, needed for detoxification of NH x . We conclude that NH x toxicity will become more pronounced under higher temperatures, but that effects on aquatic macrophytes will strongly depend on pH of the water layer and specific metabolic adaptations of different species.
Keywords:freshwater ecosystem  temperature  eutrophication  ammonium toxicity  ammonia
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