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Visual Sensitivity of Deepwater Fishes in Lake Superior

机译:苏必利尔湖深水鱼类的视觉敏感性

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摘要

The predator-prey interactions in the offshore food web of Lake Superior have been well documented, but the sensory systems mediating these interactions remain unknown. The deepwater sculpin, (Myoxocephalus thompsoni), siscowet (Salvelinus namaycush siscowet), and kiyi (Coregonus kiyi) inhabit low light level environments. To investigate the potential role of vision in predator-prey interactions, electroretinography was used to determine visual sensitivity for each species. Spectral sensitivity curves revealed peak sensitivity at 525 nm for each species which closely corresponds to the prevalent downwelling light spectrum at depth. To determine if sufficient light was available to mediate predator-prey interactions, visual sensitivity was correlated with the intensity of downwelling light in Lake Superior to construct visual depth profiles for each species. Sufficient daytime irradiance exists for visual interactions to approximately 325 m for siscowet and kiyi and 355 m for the deepwater sculpin during summer months. Under full moon conditions, sufficient irradiance exists to elicit ERG response to light available at approximately 30 m for the siscowet and kiyi and 45 m for the deepwater sculpin. Visual interactions are therefore possible at the depths and times when these organisms overlap in the water column indicating that vision may play a far greater role at depth in deep freshwater lakes than had been previously documented.
机译:苏必利尔湖近海食物网中的食肉动物与猎物之间的相互作用已有充分文献记载,但介导这些相互作用的感觉系统仍然未知。深水杜鹃(Myoxocephalus thompsoni),scoscot(Salvelinus namaycush scoscowet)和kiyi(Coregonus kiyi)居住在弱光环境中。为了研究视觉在捕食者与猎物相互作用中的潜在作用,使用了视网膜电图来确定每种物种的视觉敏感性。光谱灵敏度曲线揭示了每种物种在525 nm处的峰值灵敏度,这与深度处普遍存在的下行流光谱密切相关。为了确定是否有足够的光来介导捕食者与猎物之间的相互作用,将视觉灵敏度与苏必利尔湖上的向下流光的强度相关联,以构建每个物种的视觉深度图。在夏季,足够的白天光照用于视觉交互,siscowet和kiyi约为325 m,深水雕刻为355 m。在满月条件下,存在足够的辐照度来引发ERG对siscowet和kiyi约30 m以及深水sculpin约45 m可用光的响应。因此,在这些生物在水柱中重叠的深度和时间,视觉相互作用是可能的,这表明视觉在深水湖泊中的深度可能比以前记录的具有更大的作用。

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