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Morphological differentiation in the widespread fish Galaxias maculatus: do darker environments imply bigger eyes?

机译:在广泛的鱼类galaxias maculatus中的形态学分化:做较暗的环境意味着更大的眼睛?

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The visual capacity of aquatic organisms is, in general, related to light penetration in the water. Therefore, aquatic environments that differ in color can potentially contribute to species polymorphism, especially in fish. In this study, we explore the relationship between light quality and intensity in water bodies and the eye and mouth size in Galaxias maculatus, one of the most widespread fish. Fish morphology was studied photographically, and the vertical attenuation coefficient of light (K-d) was measured in five aquatic systems: two humic lakes, two estuaries, and one river. Water color was also estimated as absorbance at 440 nm. In those environments with less light penetration and darker water color, we observed bigger eyes and, additionally, larger mouths. The darkness of water bodies was mainly related to water color associated with humic substances. As G. maculatus is known to be a visual predator, our results suggest that bigger eyes increase visual capacity in darker environments, which would result in improved feeding rates, also supported by larger mouth length.
机译:通常,水生生物的视觉能力与水中的光渗透有关。因此,不同颜色的水生环境可能会导致物种多态性,特别是在鱼类中。在这项研究中,我们探讨了水体中的轻质和强度与Galaxias Maculatus中的眼睛和口腔大小之间的关系,是最广泛的鱼类之一。摄影鱼类形态学,在五种水生系统中测量了垂直衰减系数(K-D):两个腐殖湖,两个河口和一条河流。水彩也估计为440nm的吸光度。在那些具有较小渗透和更暗的水的环境中,我们观察到更大的眼睛,另外,较大的嘴巴。水体的黑暗主要与与腐殖质相关的水色有关。由于已知G. Maculatus是视觉捕食者,我们的结果表明,更大的眼睛在较深的环境中增加视觉能力,这将导致提高的饲养速率,也可以通过较大的嘴长度支撑。

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