Laboratory of Agrobiodiversity and Ecotoxicology, ISA, Chott-Mariem, 4042 Sousse, Tunisia; Higher Institute of Biotechnology, University of Monastir, Tunisia.
Laboratory of Agrobiodiversity and Ecotoxicology, ISA, Chott-Mariem, 4042 Sousse, Tunisia; Laboratory of Aquatic Systems: Marine and Continental Environments, Faculty of Sciences, Ibn Zohr University, Agadir, Morocco.
Sci Total Environ. 2024 Jun 1;927:172177. doi: 10.1016/j.scitotenv.2024.172177. Epub 2024 Apr 3.
The rise of plastic production has triggered a surge in plastic waste, overwhelming marine ecosystems with microplastics. The effects of climate change, notably changing salinity, have shaped the dynamics of coastal lagoons. Thus, understanding the combined impact of these phenomena on marine organisms becomes increasingly crucial. To address these knowledge gaps, we investigated for the first time the interactive effects of environmental microplastics (EMPs) and increased salinity on the early development of Mytilus galloprovincialis larvae. Morphological assessments using the larval embryotoxicity test revealed larval anomalies and developmental arrests induced by EMPs and increased salinity. Transcriptomic analyses targeting 12 genes involved in oxidative stress, apoptosis, DNA repair, shell formation, and stress proteins were conducted on D-larvae uncovered the potential effects of EMPs on shell biomineralization, highlighting the role of Histidine Rich Glycoproteine (HRG) and tubulin as crucial adaptive mechanisms in Mytilus sp. in response to environmental shifts. Furthermore, we explored oxidative stress and neurotoxicity using biochemical assays. Our findings revealed a potential interaction between EMPs and increased salinity, impacting multiple physiological processes in mussel larvae. Our data contribute to understanding the cumulative effects of emerging anthropogenic pollutants and environmental stressors, emphasizing the need for a holistic approach to assessing their impact on marine ecosystems.
塑料生产的兴起引发了塑料垃圾的激增,微塑料使海洋生态系统不堪重负。气候变化的影响,特别是盐度的变化,塑造了沿海泻湖的动态。因此,了解这些现象对海洋生物的综合影响变得越来越重要。为了填补这些知识空白,我们首次调查了环境微塑料(EMPs)和盐度升高对贻贝幼虫早期发育的交互影响。使用幼虫胚胎毒性试验进行的形态评估揭示了 EMPs 和盐度升高引起的幼虫异常和发育停滞。针对参与氧化应激、细胞凋亡、DNA 修复、壳形成和应激蛋白的 12 个基因进行的转录组分析在 D 幼虫上进行,揭示了 EMPs 对壳生物矿化的潜在影响,强调了组氨酸丰富糖蛋白(HRG)和微管蛋白作为贻贝 sp. 应对环境变化的关键适应机制的作用。此外,我们使用生化分析方法研究了氧化应激和神经毒性。我们的发现揭示了 EMPs 和盐度升高之间的潜在相互作用,影响贻贝幼虫的多个生理过程。我们的数据有助于了解新兴人为污染物和环境胁迫因素的累积影响,强调需要采用整体方法来评估它们对海洋生态系统的影响。