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磷虾和鳕鱼在实验室实验中对人造光的行为反应。

Behavioural responses of krill and cod to artificial light in laboratory experiments.

作者信息

Utne-Palm A C, Breen M, Løkkeborg S, Humborstad O-B

机构信息

Institute of Marine Research (IMR), Bergen, Norway.

出版信息

PLoS One. 2018 Jan 25;13(1):e0190918. doi: 10.1371/journal.pone.0190918. eCollection 2018.

Abstract

Most fishes and crustaceans respond to light, and artificial light sources may therefore be an efficient stimulus to manipulate behaviours in aquatic animals. It has been hypothesised that the catch efficiency of pots could be increased if prey, for example krill, can be attracted into the pots providing a visual stimulus and a source of live bait. To find which light characteristics are most attractive to krill, we tested the effects of light intensity and wavelength composition on Northern krill's (Meganyctiphanes norvegica) behavioural response to an artificial light source. The most attractive individual wavelength was 530 nm (green light), while broadband (425-750 nm) white light was an equally attractive light source. The intensity of the emitted light did not appear to have a direct effect on attraction to the light source, however it did significantly increase swimming activity among the observed krill. The most promising light stimuli for krill were tested to determine whether they would have a repulsive or attractive effect on cod (Gadus morhua); These light stimuli appeared to have a slightly repulsive, but non-significant, effect on cod. However, we suggest that a swarm of krill attracted to an artificial light source may produce a more effective visual stimulus to foraging cod.

摘要

大多数鱼类和甲壳类动物对光有反应,因此人造光源可能是操纵水生动物行为的一种有效刺激因素。据推测,如果猎物(如磷虾)能够被吸引到提供视觉刺激和活饵来源的诱捕笼中,诱捕笼的捕获效率可能会提高。为了找出对磷虾最具吸引力的光特性,我们测试了光强度和波长组成对北方磷虾(Meganyctiphanes norvegica)对人造光源行为反应的影响。最具吸引力的单个波长是530纳米(绿光),而宽带(425 - 750纳米)白光也是同样具有吸引力的光源。发出光的强度似乎对吸引光源没有直接影响,然而它确实显著增加了观察到的磷虾的游泳活动。对磷虾最有前景的光刺激进行了测试,以确定它们对鳕鱼(Gadus morhua)是有排斥还是吸引作用;这些光刺激似乎对鳕鱼有轻微的排斥作用,但不显著。然而,我们认为被人造光源吸引的一群磷虾可能会对觅食的鳕鱼产生更有效的视觉刺激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5835/5784925/0118a9641581/pone.0190918.g001.jpg

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