首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Psychoactive pollution suppresses individual differences in fish behaviour
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Psychoactive pollution suppresses individual differences in fish behaviour

机译:精神活性污染抑制了鱼类行为的个体差异

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Environmental contamination by pharmaceuticals is global, substantially altering crucial behaviours in animals and impacting on their reproduction and survival. A key question is whether the consequences of these pollutants extend beyond mean behavioural changes, restraining differences in behaviour between individuals. In a controlled, two-year, multigenerational experiment with independent mesocosm populations, we exposed guppies (Poecilia reticulata) to environmentally realistic levels of the ubiquitous pollutant fluoxetine (Prozac). Fish (unexposed: n = 59, low fluoxetine: n = 57, high fluoxetine: n = 58) were repeatedly assayed on four separate occasions for activity and risk-taking behaviour. Fluoxetine homogenized individuals' activity, with individual variation in populations exposed to even low concentrations falling to less than half that in unexposed populations. To understand the proximate mechanism underlying these changes, we tested the relative contribution of variation within and between individuals to the overall decline in individual variation. We found strong evidence that fluoxetine erodes variation in activity between but not within individuals, revealing the hidden consequences of a ubiquitous contaminant on phenotypic variation in fish-likely to impair adaptive potential to environmental change.
机译:药物对环境的污染是全球性的,极大地改变了动物的重要行为,并影响了它们的繁殖和生存。一个关键问题是,这些污染物的后果是否超出了平均行为变化的范围,从而抑制了个体之间的行为差异。在一项为期两年的多代控制实验中,我们对独立的中观世界种群进行了实验,将孔雀鱼(Poecilia neticula)暴露在普遍存在的污染物氟西汀(百忧解)的环境现实水平下。在四个不同的场合对鱼类(未暴露:n=59,低氟西汀:n=57,高氟西汀:n=58)的活动和冒险行为进行重复分析。氟西汀使个体的活动均匀化,暴露在低浓度环境中的个体差异降至未暴露环境中的一半以下。为了理解这些变化背后的近似机制,我们测试了个体内部和个体之间的变异对个体变异总体下降的相对贡献。我们发现强有力的证据表明,氟西汀会削弱个体之间而非个体内部的活动差异,揭示了一种普遍存在的污染物对鱼类表型变异的潜在后果,这种变异可能会削弱对环境变化的适应潜力。

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