Nanoplastics impaired oyster free living stages, gametes and embryos

微塑料 人类受精 生物 牡蛎 EC50型 胚胎 毒性 牡蛎 遗传毒性 变形 精子 太平洋牡蛎 幼虫 动物 毒理 繁殖 生态学 渔业 化学 解剖 植物 遗传学 体外 有机化学
作者
Kévin Tallec,Arnaud Huvet,Carole Di Poi,Carmen González-Fernández,Christophe Lambert,Bruno Petton,Nelly Le Goïc,Mathieu Berchel,Philippe Soudant,Ika Paul-Pont
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:242: 1226-1235 被引量:223
标识
DOI:10.1016/j.envpol.2018.08.020
摘要

In the marine environment, most bivalve species base their reproduction on external fertilization. Hence, gametes and young stages face many threats, including exposure to plastic wastes which represent more than 80% of the debris in the oceans. Recently, evidence has been produced on the presence of nanoplastics in oceans, thus motivating new studies of their impacts on marine life. Because no information is available about their environmental concentrations, we performed dose-response exposure experiments with polystyrene particles to assess the extent of micro/nanoplastic toxicity. Effects of polystyrene with different sizes and functionalizations (plain 2-μm, 500-nm and 50-nm; COOH-50 nm and NH2-50 nm) were assessed on three key reproductive steps (fertilization, embryogenesis and metamorphosis) of Pacific oysters (Crassostrea gigas). Nanoplastics induced a significant decrease in fertilization success and in embryo-larval development with numerous malformations up to total developmental arrest. The NH2-50 beads had the strongest toxicity to both gametes (EC50 = 4.9 μg/mL) and embryos (EC50 = 0.15 μg/mL), showing functionalization-dependent toxicity. No effects of plain microplastics were recorded. These results highlight that exposures to nanoplastics may have deleterious effects on planktonic stages of oysters, presumably interacting with biological membranes and causing cyto/genotoxicity with potentially drastic consequences for their reproductive success.
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