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Simultaneous eco-toxicity assessment technique using an online monitoring system: effects of different environmental factors on swimming behavior of zebrafish (Danio rerio)

机译:同时使用在线监测系统的生态毒性评估技术:不同环境因素对斑马鱼类游泳行为的影响(Danio Rerio)

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摘要

Environmental factors, such as photoperiod and temperature were the main limiting factors for the survival of organisms in the nature environment. Changes in environmental factors are well predicted but determining their effects on organisms are challenging hot topic in the field of eco-toxicology. Thus, technology based eco-toxicity assessment was focused worldwide. In this research, the effects of different temperatures (15 degrees C, 22 degrees C, 30 degrees C, 32 degrees C, and 35 degrees C) and photoperiods (dark and light periods) on the continuous behavior responses of Zebrafish (Danio rerio) were investigated using an online monitoring system (OMS). We designed a new fish chamber with sensors to measure the behavior responses of zebrafish under different conditions. Data obtained from the OMS could be assessed for factors such as difference in swimming behavior, circadian rhythm, and avoidance behavior using latest software (MATLAB). The observed behavior anomalies on zebrafish under different temperatures and continuous photoperiods were statically significant (p 0.05). We conclude that the new designed fish chamber (behavior sensors) is good in sensing behavioral responses of zebrafish under different conditions. The fish behavior strength could be a potential biomarker to assess the effects of environmental factors. The present study would be a basic platform for assessing the effects of different stressors simultaneously on swimming behavior of zebrafish. (C) 2020 Elsevier Ltd. All rights reserved.
机译:环境因素,如光周期和温度是自然环境中生物体存活的主要限制因素。环境因素的变化良好预测,但确定它们对生物的影响是挑战生态毒理学领域的热门话题。因此,基于技术的生态毒性评估集中在全世界。在本研究中,不同温度的影响(15摄氏度,22℃,30摄氏度,32℃,35℃)和光周期(暗和光周期)在斑马鱼(Danio Rerio)的连续行为响应上使用在线监测系统(OMS)进行调查。我们设计了一种带有传感器的新型鱼室,以测量不同条件下斑马鱼的行为响应。从OMS获得的数据可以评估使用最新软件(MATLAB)的游泳行为,昼夜节律和避免行为等因素。在不同温度和连续光周期下斑马鱼的观察到的行为异常静重显着(P <0.05)。我们得出结论,新设计的鱼室(行为传感器)良好的感应不同条件下斑马鱼的行为响应。鱼类行为强度可能是评估环境因素的影响的潜在生物标志物。本研究将是评估不同压力源同时对斑马鱼的游泳行为的基本平台。 (c)2020 elestvier有限公司保留所有权利。

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