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Testing a key assumption in animal communication: between-individual variation in female visual systems alters perception of male signals

机译:测试动物交流中的关键假设:女性视觉系统之间的个体差异会改变男性对信号的感知

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Variation in male signal production has been extensively studied because of its relevance to animal communication and sexual selection. Although we now know much about the mechanisms that can lead to variation between males in the properties of their signals, there is still a general assumption that there is little variation in terms of how females process these male signals. Variation between females in signal processing may lead to variation between females in how they rank individual males, meaning that one single signal may not be universally attractive to all females. We tested this assumption in a group of female wild-caught brown-headed cowbirds (Molothrus ater), a species that uses a male visual signal (e.g. a wingspread display) to make its mate-choice decisions. We found that females varied in two key parameters of their visual sensory systems related to chromatic and achromatic vision: cone densities (both total and proportions) and cone oil droplet absorbance. Using visual chromatic and achromatic contrast modeling, we then found that this between-individual variation in visual physiology leads to significant between-individual differences in how females perceive chromatic and achromatic male signals. These differences may lead to variation in female preferences for male visual signals, which would provide a potential mechanism for explaining individual differences in mate-choice behavior.
机译:由于其与动物交流和性选择有关,因此已广泛研究了雄性信号产生的变异。尽管我们现在对导致男性信号特性发生变化的机制了解很多,但仍然普遍认为女性处理这些男性信号的方式几乎没有变化。信号处理中雌性之间的差异可能会导致雌性之间对单个雄性的排名方式发生差异,这意味着单个信号可能并非对所有雌性都具有普遍吸引力。我们在一群雌性野生头棕色brown鸟(Molothrus ater)中测试了这个假设,该种鸟利用雄性视觉信号(例如展翅展翅)做出择偶决定。我们发现雌性在与色觉和消色差视觉相关的视觉感觉系统的两个关键参数上有所不同:视锥细胞密度(总量和比例)和视锥细胞油滴吸收率。然后,使用视觉色差和消色差对比模型,我们发现视觉生理的这种个体间差异导致女性对色觉和消色差男性信号的感知方式存在明显的个体间差异。这些差异可能导致女性对男性视觉信号的偏好发生变化,这将为解释个体选择行为的个体差异提供一种潜在的机制。

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