Nitrogen Identity Drives Differential Impacts of Nutrients on Coral Bleaching and Mortality
Autor: | Thomas C. Adam, Andrew J. Brooks, Mallory M. Rice, Shelby E. McIlroy, Katrina S. Munsterman, Sally J. Holbrook, Mark C. Ladd, Leïla Ezzat, Kelly E. Speare, David M. Baker, Deron E. Burkepile, Jane C. Y. Wong, Russell J. Schmitt, Andrew A. Shantz |
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Rok vydání: | 2019 |
Předmět: |
0106 biological sciences
010504 meteorology & atmospheric sciences Bleach Coral bleaching chemistry.chemical_element 010603 evolutionary biology 01 natural sciences chemistry.chemical_compound Nutrient Nitrate Environmental Chemistry Acropora Reef Ecology Evolution Behavior and Systematics 0105 earth and related environmental sciences geography geography.geographical_feature_category Ecology biology fungi technology industry and agriculture biochemical phenomena metabolism and nutrition biology.organism_classification Nitrogen chemistry Environmental chemistry population characteristics Pocillopora geographic locations |
Zdroj: | Ecosystems. 23:798-811 |
ISSN: | 1435-0629 1432-9840 |
DOI: | 10.1007/s10021-019-00433-2 |
Popis: | Nitrogen pollution increases the susceptibility of corals to heat-induced bleaching. However, different forms of nitrogen (nitrate vs. ammonium/urea) may have different impacts on thermal tolerance of corals. We used an 18-month field experiment on the oligotrophic fore reef of Moorea, French Polynesia, to test how different forms of nitrogen (nitrate vs. urea) impacted coral bleaching. The experiment spanned two moderate thermal stress events in 2016 and 2017. Nitrate increased bleaching prevalence in Acropora by up to 100% and in Pocillopora by up to 60% compared to control corals. Urea exposure often had intermediate effects on bleaching (not different from either control or nitrate-exposed corals) in both taxa. Importantly, nitrate prolonged bleaching in both Acropora and Pocillopora as nitrate-exposed corals remained bleached even after thermal stress ended, while control and urea-exposed corals had mostly recovered. Nitrate exposure also increased the prevalence of partial mortality in Pocillopora colonies and more than tripled the number of colonies that completely died. Our data are the first to show contrasting effects of different forms of nitrogen on coral bleaching and mortality in a natural reef environment, linking previous patterns from large-scale correlative studies with results from more mechanistic laboratory experiments. Most importantly, we showed that corals exposed to nitrate exhibited more frequent bleaching, bleached for longer duration, and were more likely to die than corals in low nitrogen conditions. Exposure to excess nitrogen, particularly anthropogenic nitrogen, may lower the temperature threshold at which corals bleach, triggering bleaching events on polluted reefs even when typical thermal stress thresholds have not been crossed. |
Databáze: | OpenAIRE |
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