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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Visual signalling by asymmetry: a review of perceptual processes
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Visual signalling by asymmetry: a review of perceptual processes

机译:不对称视觉信号:感知过程的回顾

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Individual levels of asymmetry in traits that display fluctuating asymmetry could be used as visual signals of phenotypic (and perhaps genotypic) quality, as asymmetry can often be negatively related to fitness parameters. There are some data to support this hypothesis but the experimental protocols employed have commonly resulted in asymmetries far larger than those observed in nature. To date, there has been little consideration of the ability of animals to accurately discriminate small asymmetries (of the magnitude observed in the wild) from perfect symmetry. This is key to assessing the plausibility of the asymmetry-signalling hypothesis. Here, I review the perceptual processes that may lead to the discrimination of asymmetry and discuss a number of ecologically relevant factors that may influence asymmetry signalling. These include: signal orientation, distance of trait elements from the axis of symmetry, trait complexity, trait contrast and colour, and the behaviour of both signaller and receiver. I also discuss the evolution of symmetry preferences and make suggestions as to where researchers should focus attention to examine the generality of asymmetry-signalling theory. In highly developmentally stable signalling systems the magnitude of asymmetry may be too small to be detected accurately and reliably, hence asymmetry signalling is unlikely to have evolved in these situations.
机译:显示波动性不对称性状的个体不对称性水平可以用作表型(也许是基因型)质量的视觉信号,不对称性通常与适应性参数负相关。有一些数据可以支持这种假设,但是所采用的实验方案通常会导致不对称性大大超过自然界中观察到的不对称性。迄今为止,几乎没有考虑过动物准确地将小的不对称性(在野外观察到的数量)与完全对称性区分开的能力。这是评估不对称信号假说合理性的关键。在这里,我回顾了可能导致不对称性歧视的感知过程,并讨论了可能影响不对称性信号传导的许多与生态相关的因素。这些因素包括:信号方向,特征元素与对称轴的距离,特征复杂性,特征对比度和颜色以及信号发送者和接收者的行为。我还讨论了对称偏好的演变,并提出了一些建议,建议研究人员应集中精力研究不对称信号理论的一般性。在高度发展稳定的信令系统中,不对称的大小可能太小而无法准确可靠地检测到,因此在这些情况下不对称信令不太可能发展。

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