首页> 外文期刊>Environmental toxicology and chemistry >CHRONIC EXPOSURE TO LOW CONCENTRATIONS OF WATERBORNE CADMIUM DURING EMBRYONIC AND LARVAL DEVELOPMENT RESULTS IN THE LONG-TERM HINDRANCE OF ANTIPREDATOR BEHAVIOR IN ZEBRAFISH
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CHRONIC EXPOSURE TO LOW CONCENTRATIONS OF WATERBORNE CADMIUM DURING EMBRYONIC AND LARVAL DEVELOPMENT RESULTS IN THE LONG-TERM HINDRANCE OF ANTIPREDATOR BEHAVIOR IN ZEBRAFISH

机译:斑马鱼抗体行为长期失控的胚胎和幼体发育过程中长期暴露于低浓度的水性镉

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摘要

Cadmium has been recognized for some time as a potent environmental pollutant with the capability of disrupting olfactory-mediated behaviors. Failing to respond to chemical cues in the environment could adversely affect foraging, reproduction and predator avoidance. Recognizing this impaired perception as a serious ecological problem has been undermined by the fact that the damage is often reversible; short depuration periods of 5 d may allow for the re-establishment of responses to chemical cues. In this experiment, early life stage zebrafish were continuously exposed for 50 d at 0, 0.2, 2.0, and 20 μg Cd/L. The subjects were depurated for 14 d and then subjected to behavioral testing where antipredator responses to chemical alarm cues were observed. Our data show that continuous exposure during rearing to a concentration as low as 20 μg Cd/L is sufficient at eliminating antipredator behavior in zebrafish (Danio rerio) even after the source of the cadmium had been removed for 14 d. Furthermore, subjects raised under a 10-fold lower concentration also showed alteration in their behavioral responses, taking significantly longer to respond to the predation threat. Exposure to low levels of cadmium throughout development may alter neurogenesis, subsequently resulting in long-term impairment of chemical cue perception.
机译:镉已经被认为是一种有效的环境污染物,具有破坏嗅觉介导的行为的能力。无法响应环境中的化学线索可能会对觅食,繁殖和避免捕食者产生不利影响。损害通常是可逆的,这削弱了将这种受损的认识视为一个严重的生态问题。 5 d的短净化期可能允许重新建立对化学线索的响应。在此实验中,处于生命早期的斑马鱼在0、0.2、2.0和20μgCd / L下连续暴露50 d。将受试者净化14天,然后进行行为测试,观察到反掠食者对化学警报提示的反应。我们的数据表明,即使将镉源去除14 d,饲养期间连续暴露至低至20μgCd / L的浓度也足以消除斑马鱼(Danio rerio)中的抗捕食者行为。此外,在低10倍浓度下成长的受试者也表现出行为反应改变,对掠食性威胁的反应时间明显更长。在整个发育过程中暴露于低水平的镉可能会改变神经发生,从而导致化学提示知觉的长期损害。

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