首页> 外文期刊>Aquatic Toxicology >Real-time automated measurement of Xenopus leavis tadpole behavior and behavioral responses following triphenyltin exposure using the multispecies freshwater biomonitor (MFB)
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Real-time automated measurement of Xenopus leavis tadpole behavior and behavioral responses following triphenyltin exposure using the multispecies freshwater biomonitor (MFB)

机译:使用多物种淡水生物监测器(MFB)实时自动测量非洲爪蟾t行为和三苯基锡暴露后的行为响应

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摘要

The present study examines whether behavior of Xenopus laevis tadpoles, when measured with the multispecies freshwater biomonitor (MFB), can be a sensitive and practical parameter for quantification of behavioral effects induced by toxic compounds. The MFB system is capable of automated simultaneous recording and integration of different types of movement over time. Basic tadpole behavior was studied under standard ambient temperature and colder conditions. At lower temperatures the time spent on low frequency behavior such as swimming and ventilation decreased, while at higher frequency movements associated with subtle tail tip oscillations it increased. Changes in behavior were also studied during the process of metamorphosis when both the morphology and physiology of tadpoles change. In the course of metamorphosis the tadpoles decreased the time spent on swimming and increased tail tip oscillations, especially in the period shortly before and during metamorphic climax. Additional experiments were performed to investigate whether the MFB could be used to quantify behavioral effects of exposure to a toxic compound. A 48 h exposure to a sublethal concentration of 1.25 microg L(-1) triphenyltin (TPT) significantly increased low frequency behavior, whereas 5 microg L(-1) TPT significantly reduced this type of behavior while the number of periods of total inactivity increased. One week after transferring the animals to clean water, registered behavior of tadpoles in the highest TPT group (5 microg L(-1)) was normal again for this developmental stage. The results show that the MFB can be used as a new tool for automated registration of sublethal toxic effects on tadpole behavior including recovery.
机译:本研究检验了非洲爪蟾t的行为,用多物种淡水生物监测器(MFB)进行测量时,是否可以作为量化有毒化合物引起的行为影响的灵敏和实用参数。 MFB系统能够随时间自动同时记录和整合不同类型的运动。在标准环境温度和较冷条件下研究了t的基本行为。在较低的温度下,花在低频行为(如游泳和通风)上的时间减少了,而在较高的频率下,与细微的尾尖振动相关的时间却增加了。当of的形态和生理发生变化时,还研究了在变态过程中行为的变化。在变态过程中,especially减少了游泳时间,并增加了尾尖振荡,特别是在变态高潮之前和期间。进行了其他实验,以调查MFB是否可用于量化暴露于有毒化合物的行为影响。亚致死浓度为1.25 microg L(-1)三苯基锡(TPT)的亚致死浓度48小时显着增加了低频行为,而5 microg L(-1)TPT显着降低了这种行为,而总的不活跃时间增加了。将动物转移到干净的水中一周后,最高TPT组(5 microg L(-1))中的registered的行为在此发育阶段再次恢复正常。结果表明,MFB可以用作自动注册registration致死行为对including行为包括恢复的新工具。

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