Herbicides increase the vulnerability of corals to rising sea surface temperature

Journal article


Negri, Andrew P., Flores, Florita, Röthig, Till and Uthicke, Sven 2011. Herbicides increase the vulnerability of corals to rising sea surface temperature. Limnology and Oceanography. https://doi.org/10.4319/lo.2011.56.2.0471
AuthorsNegri, Andrew P., Flores, Florita, Röthig, Till and Uthicke, Sven
Abstract

In order to examine the potential interactive pressures of local pollution and global climate change, we exposed corals and crustose coralline algae (CCA) to three agricultural photosystem II (PSII) herbicides at four temperatures (26–32°C). The coral Acropora millepora was 3‐ to 10‐fold more sensitive to the three herbicides than the CCA Neogoniolithon fosliei. While the photosynthesis of CCA was not affected by the herbicide concentrations used (< 1 μg L−1), temperatures of 31°C and 32°C alone significantly inhibited photosynthetic efficiency (ΔF:F′m) and caused chronic photoinhibition (reduced Fv:Fm) and substantial bleaching. Environmentally relevant concentrations of each herbicide increased the negative effects of thermal stress on coral at 31°C and 32°C. Mixed model analyses of variance showed that the effects of elevated sea surface temperatures (SST) and herbicide on photosynthetic efficiency of coral symbionts were additive. Furthermore, the effect of either diuron or atrazine in combination with higher SST (31°C and 32°C) on chronic photoinhibition was distinctly greater than additive (synergistic). Reducing the herbicide concentration by 1 μg L−1 diuron above 30°C would protect photosynthetic efficiency by the equivalent of 1.8°C and reduce chronic photoinhibition by the equivalent of a 1°C reduction. Reduced water quality increases the vulnerability of corals to elevated SSTs, and effective management of local water quality can reduce negative effects of global stressors such as elevated SST.

KeywordsClimate change; marine ecosystem
Year2011
JournalLimnology and Oceanography
PublisherWiley
ISSN0024-3590
1939-5590
Digital Object Identifier (DOI)https://doi.org/10.4319/lo.2011.56.2.0471
Web address (URL)http://hdl.handle.net/10545/623530
hdl:10545/623530
Publication dates03 Feb 2011
Publication process dates
Deposited25 Feb 2019, 14:42
Accepted31 Aug 2010
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Archived with thanks to Limnology and Oceanography

ContributorsAustralian Institute of Marine Science, Townsville, Queensland, Australia
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