'Drink and sleep like a fish': goldfish as a behavior model to study pharmaceutical effects in freshwater ecosystems

Valbona Aliko, E. Mehmeti, M. Qirjo, C. Faggio
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引用次数: 36

Abstract

Behavior is a mechanism through which organisms react to internal and external stimuli to best cope with challenges in an ever-changing environment. The study of animal behavior patterns in response to environmental stress/threats, is a relatively new and unexplored topic. The aim of this study is to offer a modest contribution in explaining the effects of pharmaceutical pollutants found in freshwater ecosystems, using the behavior patterns and physiology of Carassius auratus. Behavior changes were evaluated through swimming patterns, opercula and pectoral response, and rheological aggressivity. Animals were exposed for 5 weeks to water (as control), ethanol (EtOH, 0.25 and 1%, v/v), fluoxetine (FLX, 100 μg/L) and caffeine (CAF, 50 mg/L) and their short-term responses were recorded. The video has been analyzed using the open-sourced software program Track3D and EthoVision XT, which objectively quantified swimming and social behaviors. In all treatments, fish showed significantly (P<0.01) high level of stress, aggressivity and hyperactivity, compared to control. An interesting fact was that for each pollutant, fish exhibited different swimming patterns, from the normal one. These changes in the nervous system such as stressed behavior, irregular swimming patterns, hyperactivity and aggression, are consequences of pharmaceutical pollution in freshwater bodies and as such they can be used as suitable early physiological response biomarkers to environmental stress. Monitoring of altered behavior is a great early indicator of water pollution, which can easily be applied in the best aquaculture and fishery practices.
“像鱼一样喝水和睡觉”:金鱼作为研究淡水生态系统中药物作用的行为模型
行为是生物体在不断变化的环境中对内部和外部刺激作出反应以最好地应对挑战的一种机制。动物对环境压力/威胁的行为模式的研究是一个相对较新的和未开发的主题。本研究的目的是利用鲫鱼的行为模式和生理,为解释淡水生态系统中发现的药物污染物的影响提供适度的贡献。行为改变通过游泳模式、肌肉和胸部反应以及流变性来评估。动物分别接触水(对照组)、乙醇(乙醇,0.25和1%,v/v)、氟西汀(FLX, 100 μg/L)和咖啡因(CAF, 50 mg/L) 5周,记录其短期反应。使用开源软件Track3D和EthoVision XT对视频进行了分析,客观地量化了游泳和社会行为。在所有处理中,与对照组相比,鱼表现出极显著(P<0.01)的高应激、攻击性和多动性。一个有趣的事实是,对于每一种污染物,鱼都表现出与正常情况不同的游泳模式。神经系统的这些变化,如应激行为、不规则游泳模式、多动和攻击性,都是淡水水体中药物污染的后果,因此它们可以作为环境应激的早期生理反应生物标志物。监测改变的行为是水污染的一个重要早期指标,可以很容易地应用于最佳水产养殖和渔业做法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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