Gasparini Clelia
Department of Biology, University of Padova, Padova, Italy.
National Biodiversity Future Center (NBFC), Palermo, Italy.
J Anim Ecol. 2025 Feb;94(2):179-181. doi: 10.1111/1365-2656.14230. Epub 2024 Dec 3.
Research Highlight: Aich, U., Polverino, G., Yazdan Parast, F., Melo, G. C., Tan, H., Howells, J., Nosrati, R., & Wong, B. B. M. (2024). Long-term effects of widespread pharmaceutical pollution on trade-offs between behavioural, life history and reproductive traits in fish. Journal of Animal Ecology. https://doi.org/10.1111/1365-2656.14152. Pharmaceutical pollutants are increasingly common in aquatic ecosystems, and organisms living there are the unintended targets of these compounds, originally designed for humans. However, our understanding of these effects remains limited. In a recent study, Aich et al. (2024) investigated the effects of fluoxetine on a small freshwater fish, the guppy (Poecilia reticulata), with particular emphasis on behaviour. The authors found that, after multigenerational exposure to ecologically relevant concentrations of this compound, there was minimal impact on average behavioural traits at the population level. However, fluoxetine exposure reduced within-individual behavioural plasticity and altered the delicate equilibrium among these traits. These findings could have far-reaching evolutionary implications for how individuals and populations may respond to environmental changes and highlight the need for behavioural ecotoxicology to move beyond population-level effects. This research provides valuable insights into the subtle and multifaceted-yet profound-impacts of pollutants on ecological and evolutionary processes, highlighting the importance of studying behavioural responses at the individual level to predict how populations will respond to our rapidly changing world.
艾希,U.,波尔韦里诺,G.,亚兹丹·帕拉斯特,F.,梅洛,G. C.,谭,H.,豪厄尔斯,J.,诺斯拉蒂,R.,& 王,B. B. M.(2024年)。广泛存在的药物污染对鱼类行为、生活史和繁殖性状之间权衡的长期影响。《动物生态学杂志》。https://doi.org/10.1111/1365 - 2656.14152。药物污染物在水生生态系统中越来越普遍,生活在那里的生物是这些原本为人类设计的化合物的意外目标。然而,我们对这些影响的理解仍然有限。在最近的一项研究中,艾希等人(2024年)研究了氟西汀对一种小型淡水鱼孔雀鱼(孔雀花鳉)的影响,特别关注行为方面。作者发现,在多代暴露于该化合物的生态相关浓度后,对种群水平的平均行为性状影响极小。然而,氟西汀暴露降低了个体内的行为可塑性,并改变了这些性状之间的微妙平衡。这些发现可能对个体和种群如何应对环境变化具有深远的进化意义,并凸显了行为生态毒理学超越种群水平影响的必要性。这项研究为污染物对生态和进化过程的微妙、多方面但深刻的影响提供了有价值的见解,强调了在个体水平研究行为反应以预测种群将如何应对我们快速变化的世界的重要性。