Lawrence Jassica, Santolini Carlotta, Binda Gilberto, Carnati Stefano, Boldrocchi Ginevra, Pozzi Andrea, Bettinetti Roberta
DISAT Department of Science and High Technology, University of Insubria, Via Valleggio 11, 22100 Como, Italy.
University School for Advanced Studies IUSS, 27100 Pavia, Italy.
Toxics. 2023 Dec 13;11(12):1017. doi: 10.3390/toxics11121017.
Lakes are essentially interlinked to humans as they provide water for drinking, agriculture, industrial and domestic purposes. The upsurge of plastic usage, its persistence, and potential detrimental effects on organisms cause impacts on the trophic food web of freshwater ecosystems; this issue, however, still needs to be explored. Zooplankton worldwide is commonly studied as an indicator of environmental risk in aquatic ecosystems for several pollutants. The aim of the review is to link the existing knowledge of microplastic pollution in zooplankton to assess the potential risks linked to these organisms which are at the first level of the lacustrine trophic web. A database search was conducted through the main databases to gather the relevant literature over the course of time. The sensitivity of zooplankton organisms is evident from laboratory studies, whereas several knowledge gaps exist in the understanding of mechanisms causing toxicity. This review also highlights insufficient data on field studies hampering the understanding of the pollution extent in lakes, as well as unclear trends on ecosystem-level cascading effects of microplastics (MPs) and mechanisms of toxicity (especially in combination with other pollutants). Therefore, this review provides insight into understanding the overlooked issues of microplastic in lake ecosystems to gain an accurate ecological risk assessment.
湖泊与人类息息相关,因为它们为饮用、农业、工业和家庭用水提供水源。塑料使用量的激增、其持久性以及对生物的潜在有害影响,对淡水生态系统的营养食物网产生了影响;然而,这个问题仍有待探索。浮游动物作为水生生态系统中多种污染物环境风险的指标,在全球范围内普遍受到研究。本综述的目的是将浮游动物中微塑料污染的现有知识联系起来,以评估与这些处于湖泊营养网第一级的生物相关的潜在风险。通过主要数据库进行了数据库搜索,以收集不同时期的相关文献。实验室研究表明浮游动物对微塑料很敏感,但在对造成毒性的机制的理解上仍存在一些知识空白。本综述还强调了实地研究数据不足,这妨碍了对湖泊污染程度的理解,以及微塑料对生态系统层面的级联效应和毒性机制(特别是与其他污染物结合时)的趋势不明确。因此,本综述有助于深入了解湖泊生态系统中被忽视的微塑料问题,以获得准确的生态风险评估。