Lighting environment predicts the relative abundance of male colour morphs in bluefin killifish (Lucania goodei) populations

R. Fuller
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引用次数: 141

Abstract

Animal communication occurs when an animal emits a signal, the signal is transmitted through the environment, and then detected by the receiver. The environment in which signalling occurs should govern the efficacy of this process. In this study, I examine the relationship of lighting environment (light transmission and tree cover), location and the relative abundances of male colour morphs across seven drainages and 30 populations in the bluefin killifish, Lucania goodei. I found that males with blue anal fins were more common in populations with low transmission of ultraviolet (UV) and blue wavelengths. By contrast, males with red anal fins (and to a lesser extent, males with yellow anal fins) were more common in populations with high transmission of UV and blue wavelengths. High UV–blue light transmission should create a blue visual background and may make blue males less conspicuous and red males more conspicuous to conspecifics. Colour contrast with the visual background may be more important than total brightness of the colour pattern. These results indicate that natural selection for effective intraspecific communication drives the relative abundance of male colour morphs in different lighting habitats.
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光照环境预测了蓝鳍鳉(Lucania goodei)种群中雄性颜色变体的相对丰度
动物之间的交流发生在动物发出信号时,信号通过环境传播,然后被接收器探测到。信号发生的环境应该控制这一过程的有效性。在这项研究中,我研究了七个流域和30个蓝鳍鳉种群的光照环境(光传输和树木覆盖)、位置和雄性颜色变异的相对丰度之间的关系。我发现,在紫外线(UV)和蓝色波长透射率较低的种群中,蓝色肛门鳍的雄性更为常见。相比之下,红色肛门鳍的雄性(在较小程度上,黄色肛门鳍的雄性)在紫外线和蓝色波长透射率高的种群中更为常见。高紫外-蓝光传输会产生蓝色的视觉背景,可能会使蓝色雄性不那么显眼,而红色雄性更容易被同种生物注意。与视觉背景的颜色对比可能比颜色图案的总亮度更重要。这些结果表明,有效的种内交流的自然选择驱动了不同光照生境中雄性颜色变体的相对丰度。
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