Sensitivity Differences in Fish Offer Near-Infrared Vision as an Adaptable Evolutionary Trait

孔雀鱼 趋光性 生物 浊度 栖息地 伪装 阳光 光谱灵敏度 近红外光谱 生态学 环境科学 动物 波长 光学 渔业 物理 植物 神经科学
作者
Denis Shcherbakov,Alexandra Knörzer,Svenja Espenhahn,Reinhard Hilbig,U. Haas,Martin Blum
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:8 (5): e64429-e64429 被引量:40
标识
DOI:10.1371/journal.pone.0064429
摘要

Near-infrared (NIR) light constitutes an integrated part of solar radiation. The principal ability to sense NIR under laboratory conditions has previously been demonstrated in fish. The availability of NIR in aquatic habitats, and thus its potential use as a cue for distinct behaviors such as orientation and detection of prey, however, depends on physical and environmental parameters. In clear water, blue and green light represents the dominating part of the illumination. In turbid waters, in contrast, the relative content of red and NIR radiation is enhanced, due to increased scattering and absorption of short and middle range wavelengths by suspended particles and dissolved colored materials. We have studied NIR detection thresholds using a phototactic swimming assay in five fish species, which are exposed to different NIR conditions in their natural habitats. Nile and Mozambique tilapia, which inhabit waters with increased turbidity, displayed the highest spectral sensitivity, with thresholds at wavelengths above 930 nm. Zebrafish, guppy and green swordtail, which prefer clearer waters, revealed significantly lower thresholds of spectral sensitivity with 825-845 nm for green swordtail and 845-910 nm for zebrafish and guppy. The present study revealed a clear correlation between NIR sensation thresholds and availability of NIR in the natural habitats, suggesting that NIR vision, as an integral part of the whole spectrum of visual abilities, can serve as an evolutionarily adaptable trait in fish.

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