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广泛存在的药物污染对鱼类行为、生活史和繁殖特征之间权衡的长期影响。

Long-term effects of widespread pharmaceutical pollution on trade-offs between behavioural, life-history and reproductive traits in fish.

作者信息

Aich Upama, Polverino Giovanni, Yazdan Parast Farin, Melo Gabriela C, Tan Hung, Howells James, Nosrati Reza, Wong Bob B M

机构信息

School of Biological Sciences, Monash University, Clayton, Victoria, Australia.

Department of Ecological and Biological Sciences, University of Tuscia, Viterbo, Italy.

出版信息

J Anim Ecol. 2025 Mar;94(3):340-355. doi: 10.1111/1365-2656.14152. Epub 2024 Aug 26.

Abstract

In our rapidly changing world, understanding how species respond to shifting conditions is of paramount importance. Pharmaceutical pollutants are widespread in aquatic ecosystems globally, yet their impacts on animal behaviour, life-history and reproductive allocation remain poorly understood, especially in the context of intraspecific variation in ecologically important traits that facilitate species' adaptive capacities. We test whether a widespread pharmaceutical pollutant, fluoxetine (Prozac), disrupts the trade-off between individual-level (co)variation in behavioural, life-history and reproductive traits of freshwater fish. We exposed the progeny of wild-caught guppies (Poecilia reticulata) to three field-relevant levels of fluoxetine (mean measured concentrations: 0, 31.5 and 316 ng/L) for 5 years, across multiple generations. We used 12 independent laboratory populations and repeatedly quantified activity and risk-taking behaviour of male guppies, capturing both mean behaviours and variation within and between individuals across exposure treatments. We also measured key life-history traits (body condition, coloration and gonopodium size) and assessed post-copulatory sperm traits (sperm vitality, number and velocity) that are known to be under strong sexual selection in polyandrous species. Intraspecific (co)variation of these traits was analysed using a comprehensive, multivariate statistical approach. Fluoxetine had a dose-specific (mean) effect on the life-history and sperm trait of guppies: low pollutant exposure altered male body condition and increased gonopodium size, but reduced sperm velocity. At the individual level, fluoxetine reduced the behavioural plasticity of guppies by eroding their within-individual variation in both activity and risk-taking behaviour. Fluoxetine also altered between-individual correlations in pace-of-life syndrome traits: it triggered the emergence of correlations between behavioural and life-history traits (e.g. activity and body condition) and between life-history and sperm traits (e.g. gonopodium size and sperm vitality), but collapsed other between-individual correlations (e.g. activity and gonopodium size). Our results reveal that chronic exposure to global pollutants can affect phenotypic traits at both population and individual levels, and even alter individual-level correlations among such traits in a dose-specific manner. We discuss the need to integrate individual-level analyses and test behaviour in association with life-history and reproductive traits to fully understand how animals respond to human-induced environmental change.

摘要

在我们这个瞬息万变的世界里,了解物种如何应对不断变化的环境至关重要。药物污染物在全球水生生态系统中广泛存在,然而它们对动物行为、生活史和生殖分配的影响仍知之甚少,尤其是在生态重要性状的种内变异背景下,这些变异有助于物种的适应能力。我们测试了一种广泛存在的药物污染物氟西汀(百忧解)是否会破坏淡水鱼行为、生活史和生殖性状的个体水平(协)变异之间的权衡。我们将野生孔雀鱼(孔雀鱼)的后代暴露于三个与野外相关的氟西汀水平(平均测量浓度:0、31.5和316纳克/升)下,持续5年,跨越多个世代。我们使用了12个独立的实验室种群,反复量化雄性孔雀鱼的活动和冒险行为,捕捉暴露处理之间个体内部和个体之间的平均行为和变异。我们还测量了关键的生活史性状(身体状况、体色和臀鳍大小),并评估了交配后精子性状(精子活力、数量和速度),已知这些性状在多配偶物种中受到强烈的性选择。使用综合的多变量统计方法分析了这些性状的种内(协)变异。氟西汀对孔雀鱼的生活史和精子性状有剂量特异性(平均)影响:低污染物暴露改变了雄性身体状况,增加了臀鳍大小,但降低了精子速度。在个体水平上,氟西汀通过侵蚀孔雀鱼在活动和冒险行为方面的个体内部变异,降低了它们的行为可塑性。氟西汀还改变了生活节奏综合征性状之间的个体间相关性:它引发了行为和生活史性状(如活动和身体状况)之间以及生活史和精子性状(如臀鳍大小和精子活力)之间相关性的出现,但破坏了其他个体间相关性(如活动和臀鳍大小)。我们的结果表明,长期暴露于全球污染物会在种群和个体水平上影响表型性状,甚至以剂量特异性方式改变这些性状之间的个体水平相关性。我们讨论了整合个体水平分析并结合生活史和生殖性状测试行为的必要性,以全面了解动物如何应对人为引起的环境变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/676d/11880659/69ab12e31349/JANE-94-340-g003.jpg

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