Sound improves visual discrimination learning in avian predators

C. Rowe
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引用次数: 75

Abstract

Aposematic insects use warning colours to deter predators, but many also produce odours or sounds when attacked by a predator. One possible role for these additional components is that they promote the association between the warning colour and the non–profitability it signals, thus reducing the chance of future attacks from visually hunting predators. This experiment explicitly tests this idea by looking at the effects of sound on a visual discrimination task. Young domestic chicks were trained to look for food rewards under coloured paper cones scattered in an experimental arena. In a subsequent visual discrimination task, they learned to discriminate between rewarded and non–rewarded hats on the basis of colour. Half the chicks performed this task in silence, whilst the other half had a tone played when they attacked non–rewarded hats. The presence of the tone improved the speed of colour discrimination learning. This demonstrates that there could be a selective advantage for aposematic coloured insects to emit sounds when attacked, since avian predators will learn to avoid their coloration more quickly. The role of psychological interactions between signal components in receivers is discussed in relation to the evolution of multimodal displays.
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声音提高了鸟类捕食者的视觉辨别能力
警示性昆虫使用警告色来阻止捕食者,但许多昆虫在受到捕食者攻击时也会发出气味或声音。这些额外成分的一个可能作用是,它们促进了警告颜色与它所标志的非盈利性之间的联系,从而减少了未来被视觉捕食者攻击的机会。这个实验通过观察声音对视觉辨别任务的影响,明确地验证了这一观点。年轻的家鸡被训练在实验场地上分散的彩色纸锥下寻找食物奖励。在随后的视觉辨别任务中,他们学会了根据颜色区分有奖励和没有奖励的帽子。一半的小鸡在安静的情况下完成了这项任务,而另一半的小鸡在攻击没有奖励的帽子时则播放了一种声音。音调的出现提高了辨别颜色的学习速度。这表明,具有警示性颜色的昆虫在受到攻击时发出声音可能是一种选择优势,因为鸟类捕食者会更快地学会避开它们的颜色。讨论了接收机中信号成分之间的心理相互作用与多模态显示演变的关系。
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