Franco Marco E
Department of Environmental Toxicology, Swiss Federal Institute of Aquatic Science and Technology, Eawag, 8600, Dübendorf, Switzerland.
Ecotoxicology. 2025 Jan;34(1):1-10. doi: 10.1007/s10646-024-02827-y. Epub 2024 Nov 5.
Molecular ecotoxicology facilitates the mechanistic understanding of chemical-organism interactions and the establishment of frameworks to link molecular events to adverse outcomes. However, the foundation of this sub-discipline must remain focused on the necessity to generate insight at levels of biological organization beyond the individual, namely the population, community, and ecosystem levels, and to strive towards ecological relevance. As planet Earth continues to experience unprecedented levels of chemical pollution, causing significant impact to the integrity and functionality of ecosystems, research efforts in molecular ecotoxicology must prioritize experimentation that quantitatively incorporates the influence of non-chemical stressors to enhance the predictability of chemical-driven effects at the population level and beyond. Here, perspectives on the challenge to transition experimental data to environmentally relevant scenarios are offered in an attempt to highlight the critical role of molecular ecotoxicology in protecting and supporting ecosystems threatened by chemical pollution.
分子生态毒理学有助于从机制上理解化学物质与生物体之间的相互作用,并建立将分子事件与不良后果联系起来的框架。然而,这一学科分支的基础必须始终聚焦于在个体以上的生物组织层次(即种群、群落和生态系统层次)产生深刻见解的必要性,并努力实现生态相关性。随着地球持续经历前所未有的化学污染水平,对生态系统的完整性和功能造成重大影响,分子生态毒理学的研究工作必须优先进行定量纳入非化学应激源影响的实验,以提高在种群及更高层次上对化学驱动效应的预测能力。在此,我们提出了关于将实验数据转化为与环境相关情景这一挑战的观点,旨在突出分子生态毒理学在保护和支持受化学污染威胁的生态系统方面的关键作用。