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远洋生物会避开科学仪器发出的白色、蓝色和红色的人造光。

Pelagic organisms avoid white, blue, and red artificial light from scientific instruments.

机构信息

Centre for Fisheries Ecosystems Research, Fisheries and Marine Institute of Memorial University of Newfoundland, St. John's, NL, Canada.

Department of Arctic and Marine Biology, UiT the Arctic University of Norway, Tromsø, Norway.

出版信息

Sci Rep. 2021 Jul 22;11(1):14941. doi: 10.1038/s41598-021-94355-6.

Abstract

In situ observations of pelagic fish and zooplankton with optical instruments usually rely on external light sources. However, artificial light may attract or repulse marine organisms, which results in biased measurements. It is often assumed that most pelagic organisms do not perceive the red part of the visible spectrum and that red light can be used for underwater optical measurements of biological processes. Using hull-mounted echosounders above an acoustic probe or a baited video camera, each equipped with light sources of different colours (white, blue and red), we demonstrate that pelagic organisms in Arctic and temperate regions strongly avoid artificial light, including visible red light (575-700 nm), from instruments lowered in the water column. The density of organisms decreased by up to 99% when exposed to artificial light and the distance of avoidance varied from 23 to 94 m from the light source, depending on colours, irradiance levels and, possibly, species communities. We conclude that observations from optical and acoustic instruments, including baited cameras, using light sources with broad spectral composition in the 400-700 nm wavelengths do not capture the real state of the ecosystem and that they cannot be used alone for reliable abundance estimates or behavioural studies.

摘要

利用光学仪器对海洋浮游鱼类和浮游动物进行原位观测通常依赖于外部光源。然而,人工光可能会吸引或排斥海洋生物,从而导致测量结果出现偏差。人们通常认为大多数海洋浮游生物无法感知可见光谱中的红色部分,并且可以使用红光进行水下生物过程的光学测量。通过在声学探头上方或带饵摄像机上安装船壳安装回声测深仪,每个仪器都配备了不同颜色的光源(白色、蓝色和红色),我们证明了北极和温带地区的浮游生物强烈避免来自水中仪器的人工光,包括可见的红光(575-700nm)。当暴露于人工光时,生物密度最多下降了 99%,而回避距离则取决于颜色、辐照度水平以及可能的物种群落,从光源处的 23 米到 94 米不等。我们的结论是,使用 400-700nm 波长范围内具有广谱成分的光源的光学和声学仪器(包括带饵摄像机)的观测结果不能真实反映生态系统的状态,并且不能单独用于可靠的丰度估计或行为研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e97/8298562/affcbb8b9c8b/41598_2021_94355_Fig1_HTML.jpg

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