Institute for the study of Anthropic impacts and Sustainability in marine environment - National research Council (CNR-IAS), Via de Marini 6, 16149 Genova, Italy.
Institute for the study of Anthropic impacts and Sustainability in marine environment - National research Council (CNR-IAS), Via de Marini 6, 16149 Genova, Italy.
Mar Pollut Bull. 2019 Jun;143:140-143. doi: 10.1016/j.marpolbul.2019.04.055. Epub 2019 Apr 25.
In this study, the acute toxicity of microplastics (MPs) on unicellular organisms as marine decomposers and microalgae was assessed, by evaluating standards endpoints included in International Standard Organization (ISO) protocols. The bacteria Vibrio fischeri and the diatom Phaeodactylum tricornutum were exposed to different sizes (1-500 μm) of polyethylene MPs in order to evaluate bioluminescence inhibition and microalgal growth. No acute toxicity was found on bacteria or microalgae in an order of magnitude above environmentally relevant concentrations, suggesting that tested MPs did not affect the investigated biological processes. In conclusion, standard ecotoxicological endpoints are not sufficiently sensitive to assess the potential effects of MPs on decomposers and primary producers, conversely to nanoplastics. These findings highlight that the current approach for MP risk assessment in unicellular species should be revised, by providing alternative endpoints to be included in standardized protocols, able to monitor the fate and biological effects of MPs.
在这项研究中,通过评估国际标准化组织 (ISO) 协议中包含的标准终点,评估了作为海洋分解者和微藻的单细胞生物中小塑料 (MPs) 的急性毒性。将细菌发光菌和硅藻三角褐指藻暴露于不同大小 (1-500μm) 的聚乙烯 MPs 中,以评估生物发光抑制和微藻生长。在环境相关浓度的数量级以上,对细菌或微藻均未发现急性毒性,表明测试的 MPs 未影响所研究的生物过程。总之,标准的生态毒理学终点不够敏感,无法评估 MPs 对分解者和初级生产者的潜在影响,与纳米塑料相反。这些发现强调,目前应修订用于单细胞物种中 MPs 风险评估的方法,提供替代终点纳入标准化协议中,以监测 MPs 的命运和生物效应。