光毒性
珊瑚
海葵
珊瑚漂白
珊瑚虫
银莲花
虫黄藻
化学
紫外线辐射
阳光
共生
生物
环境化学
植物
生态学
生物化学
细菌
物理
放射化学
体外
遗传学
天文
作者
Djordje Vuckovic,Amanda I. Tinoco,Lorraine Ling,Christian Renicke,John R. Pringle,William A. Mitch
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2022-05-05
卷期号:376 (6593): 644-648
被引量:61
标识
DOI:10.1126/science.abn2600
摘要
The reported toxicity of oxybenzone-based sunscreens to corals has raised concerns about the impacts of ecotourist-shed sunscreens on corals already weakened by global stressors. However, oxybenzone's toxicity mechanism(s) are not understood, hampering development of safer sunscreens. We found that oxybenzone caused high mortality of a sea anemone under simulated sunlight including ultraviolet (UV) radiation (290 to 370 nanometers). Although oxybenzone itself protected against UV-induced photo-oxidation, both the anemone and a mushroom coral formed oxybenzone-glucoside conjugates that were strong photo-oxidants. Algal symbionts sequestered these conjugates, and mortality correlated with conjugate concentrations in animal cytoplasm. Higher mortality in anemones that lacked symbionts suggests an enhanced risk from oxybenzone to corals bleached by rising temperatures. Because many commercial sunscreens contain structurally related chemicals, understanding metabolite phototoxicity should facilitate the development of coral-safe products.
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