Effects of copper and butyltin compounds on the growth, photosynthetic activity and toxin production of two HAB dinoflagellates: The planktonic Alexandrium catenella and the benthic Ostreopsis cf. ovata

浮游生物 光合作用 底栖区 浮游植物 生物 环境化学 水华 藻类 EC50型 毒素 植物 化学 生态学 微生物学 生物化学 体外 营养物
作者
Douglas Couet,Olivier Pringault,Chrystelle Bancon‐Montigny,Nicolas Briant,Françoise Elbaz Poulichet,Sophie Delpoux,Ons Kéfi–Daly Yahia,Héla Ben Gharbia,M’Rabet Charaf,Fabienne Hervé,Georges Augustin Rovillon,Zouher Amzil,Mohamed Laabir
出处
期刊:Aquatic Toxicology [Elsevier]
卷期号:196: 154-167 被引量:24
标识
DOI:10.1016/j.aquatox.2018.01.005
摘要

Controlled laboratory experiments were conducted to test the effects of copper (Cu2+) and butyltins (BuT) on the growth, photosynthetic activity and toxin content of two HABs (Harmful Algal Blooms) dinoflagellates, the planktonic Alexandrium catenella and the benthic Ostreopsis cf. ovata. Microalgae were exposed to increasing concentrations of Cu2+ (10−4 to 31 nM) or BuT (0.084 to 84 nM) for seven days. When considering the growth, EC50 values were 0.16 (±0.09) nM and 0.03 (±0.02) nM of Cu2+ for A. catenella and O. cf. ovata, respectively. Regarding BuT, EC50 was 14.2 (±6) nM for O. cf. ovata, while A. catenella growth inhibition appeared at BuT concentrations ≥27 nM. Photosynthetic activity of the studied dinoflagellates decreased with increasing Cu and BuT concentrations. For O. cf. ovata, the response of this physiological parameter to contamination was less sensitive than the biomass. Cu exposure induced the formation of temporary cysts in both organisms that could resist adverse conditions. The ovatoxin-a and -b concentrations in O. cf. ovata cells increased significantly in the presence of Cu. Altogether, the results suggest a better tolerance of the planktonic A. catenella to Cu and BuT. This could result in a differentiated selection pressure exerted by these metals on phytoplankton species in highly polluted waters. The over-production of toxins in response to Cu stress could pose supplementary health and socio-economic threats in the contaminated marine ecosystems where HABs develop.
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