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环境抗抑郁剂对幼年滨蟹(Carcinus maenas)体色变化和运动行为的影响。

Effects of environmental antidepressants on colour change and locomotor behaviour in juvenile shore crabs, Carcinus maenas.

机构信息

NORMANDIE UNIV, UNILEHAVRE, FR CNRS 3730 SCALE, UMR-I02, Environmental Stress and Biomonitoring of Aquatic Environments (SEBIO), 76600 LE HAVRE, France; NORMANDIE UNIV, UNICAEN, CNRS, EthoS (Éthologie animale et humaine) - UMR 6552, F-14000 CAEN, France; UNIV RENNES, CNRS, EthoS (Éthologie animale et humaine) - UMR 6552, F-35000 RENNES, France.

NORMANDIE UNIV, UNICAEN, CNRS, EthoS (Éthologie animale et humaine) - UMR 6552, F-14000 CAEN, France; UNIV RENNES, CNRS, EthoS (Éthologie animale et humaine) - UMR 6552, F-35000 RENNES, France.

出版信息

Aquat Toxicol. 2021 May;234:105808. doi: 10.1016/j.aquatox.2021.105808. Epub 2021 Mar 12.

DOI:10.1016/j.aquatox.2021.105808
PMID:33774504
Abstract

Juvenile crabs of Carcinus maenas thrive in coastal waters reputed to be the receptacle of continental pollution. Amongst the many pollutants encountered, antidepressants, such as fluoxetine (FLX) and venlafaxine (VEN), often detected at the ng•L range, are particularly worrying because of their action on the levels of monoamines, such as serotonin, noradrenaline and dopamine. In crustaceans, those monoamines are involved in colour change through their action on neuropeptide hormones. In addition, they are known to have a role in different behaviours, such as locomotion. Both colour change and locomotion are strategies used by juvenile crabs to hide and escape from predators. To investigate if the presence of antidepressants may alter behaviours of ecological importance, juvenile crabs were exposed to environmentally realistic concentrations of either 5 ng•L of FLX alone or in combination with VEN at 5 ng•L. The ability to change colour depending on the environment and the locomotor activity of juvenile crabs were monitored weekly over 25 days. Animals exposed to antidepressants displayed a different pattern of colour change than the controls, especially those exposed to the combination of FLX and VEN at 5 ng•L each, and were less efficient to adapt to their environment, i.e., they were not as pale and not as dark as controls or crabs exposed to FLX at 5 ng•L. Moreover, juvenile crabs exposed to the combination of antidepressants exhibited an enhanced locomotor activity throughout the exposure period with a higher velocity and distance moved as well as more time spend moving. The alteration of cryptic behaviours, such as colour change and locomotion by antidepressants persistently present in marine environment at low concentrations may have an impact on the survival of juvenile of C. maenas on the long term.

摘要

少年蟹在被认为是大陆污染物容器的沿海水域中茁壮成长。在遇到的许多污染物中,抗抑郁药,如氟西汀 (FLX) 和文拉法辛 (VEN),经常在 ng•L 范围内被检测到,由于它们对单胺类物质(如血清素、去甲肾上腺素和多巴胺)水平的作用,尤其令人担忧。在甲壳类动物中,这些单胺类物质通过对神经肽激素的作用参与颜色变化。此外,已知它们在不同行为中发挥作用,如运动。颜色变化和运动都是少年蟹用来隐藏和逃避捕食者的策略。为了研究抗抑郁药的存在是否会改变具有生态重要性的行为,将少年蟹暴露于环境现实浓度的 5 ng•L 的 FLX 或与 5 ng•L 的 VEN 组合中。每周监测少年蟹根据环境改变颜色的能力和运动活动,持续 25 天。与对照组相比,暴露于抗抑郁药的动物表现出不同的颜色变化模式,尤其是那些暴露于 5 ng•L 的 FLX 和 VEN 组合中的动物,它们适应环境的能力较差,即它们不如对照组或暴露于 5 ng•L 的 FLX 的螃蟹那样苍白或黑暗。此外,暴露于抗抑郁药组合的少年蟹在整个暴露期间表现出增强的运动活性,具有更高的速度和移动距离以及更多的移动时间。在海洋环境中低浓度持续存在的隐蔽行为(如颜色变化和运动)的改变可能会对 C. maenas 的少年蟹的长期生存产生影响。

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