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缺氧和碳氢化合物对欧洲鲈鱼(Dicentrarchus labrax)抗捕食性能的影响。

The effect of hypoxia and hydrocarbons on the anti-predator performance of European sea bass (Dicentrarchus labrax).

机构信息

CNR-IAMC, Istituto per l'Ambiente Marino Costiero, Località Sa Mardini, 09170, Torregrande, Oristano, Italy.

Centre de Documentation de Recherche et d'Expérimentations sur les Pollutions Accidentelles des Eaux (CEDRE), 715 rue Alain Colas, CS41836-F-29218, Brest Cedex 2, France.

出版信息

Environ Pollut. 2019 Aug;251:581-590. doi: 10.1016/j.envpol.2019.05.017. Epub 2019 May 8.

Abstract

Hydrocarbons contamination and hypoxia are two stressors that can coexist in coastal ecosystems. At present, few studies evaluated the combined impact of these stressors on fish physiology and behavior. Here, we tested the effect of the combination of hypoxia and petrogenic hydrocarbons on the anti-predator locomotor performance of fish. Specifically, two groups of European sea bass (Dicentrarchus labrax) were exposed to clean water (Ctrl) or oil-contaminated water (Oil). Subsequently, fish of both groups were placed in normoxic (norx) or hypoxic (hyp) experimental tanks (i.e. four groups of fish were formed: Ctrl norx, Ctrl hyp, Oil norx, Oil hyp). In these tanks, escape response was elicited by a mechano-acoustic stimulus and recorded with a high speed camera. Several variables were analyzed: escape response duration, responsiveness (percentage of fish responding to the stimulation), latency (time taken by the fish to initiate a response), directionality (defined as away or toward the stimulus), distance-time variables (such as speed and acceleration), maneuverability variables (such as turning rate), escape trajectory (angle of flight) and distancing of the fish from the stimulus. Results revealed (i) effects of stressors (Ctrl hyp, Oil norx and Oil hyp) on the directionality; (ii) effects of Oil norx and Oil hyp on maneuverability and (iii) effects of Oil hyp on distancing. These results suggest that individual stressors could alter the escape response of fish and that their combination could strengthen these effects. Such an impact could decrease the probability of prey escape success. By investigating the effects of hydrocarbons (and the interaction with hypoxia) on the anti-predator behavior of fish, this work increases our understanding of the biological impact of oil spill. Additionally, the results of this study are of interest for oil spill impact evaluation and also for developing new ecotoxicological tools of ecological significance.

摘要

烃类污染和缺氧是两种可以共存于沿海生态系统中的胁迫因素。目前,很少有研究评估这些胁迫因素对鱼类生理和行为的综合影响。在这里,我们测试了缺氧和石油烃类污染物组合对鱼类防御捕食者的运动表现的影响。具体来说,两组欧洲鲈鱼(Dicentrarchus labrax)分别暴露于清洁水(Ctrl)或受石油污染的水(Oil)中。随后,两组鱼都被置于正常氧(norx)或缺氧(hyp)实验水槽中(即形成了四组鱼:Ctrl norx、Ctrl hyp、Oil norx、Oil hyp)。在这些水槽中,通过机械声刺激引发逃避反应,并使用高速摄像机进行记录。分析了几个变量:逃避反应持续时间、反应性(对刺激做出反应的鱼的百分比)、潜伏期(鱼开始反应所需的时间)、方向性(定义为远离或朝向刺激)、距离-时间变量(如速度和加速度)、操纵性变量(如转弯率)、逃避轨迹(飞行角度)以及鱼与刺激的距离。结果表明:(i)胁迫因素(Ctrl hyp、Oil norx 和 Oil hyp)对方向性有影响;(ii)Oil norx 和 Oil hyp 对操纵性有影响;(iii)Oil hyp 对距离有影响。这些结果表明,单一的胁迫因素可以改变鱼类的逃避反应,而它们的组合可能会强化这些影响。这种影响可能会降低猎物逃避成功的可能性。通过研究烃类(及其与缺氧的相互作用)对鱼类防御捕食行为的影响,这项工作增加了我们对石油泄漏的生物影响的理解。此外,这项研究的结果对于石油泄漏影响评估以及开发具有生态意义的新生态毒理学工具具有重要意义。

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