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Some mistakes go unpunished: The evolution of all or nothing signalling

机译:一些错误不会被惩罚:全有或全无信号的演变

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摘要

Many models of honest signaling, based on Zahavi's handicap principle, predict that if receivers are interested in a quality that shows continuous variation across the population of signalers, then the distribution of signal intensities will also be continuous. However, it has previously been noted that this prediction does not agree with empirical observation in many signaling systems, where signals are limited to a small number of levels despite continuous variation in the trait being signaled. Typically, there is a critical value of the trait, with all individuals with trait values on one side of the threshold using the same cheap signal, and all those with trait values on the other side of the threshold using the same expensive signal. It has already been demonstrated that these classical models naturally predict such all-or-nothing signaling if it is additionally assumed that receivers suffer from perceptual error in evaluating signal strength. We show that such all-or-nothing signaling is also predicted if receivers are limited to responding to the signals in one of two ways. We suggest that many ecological situations (such as the decision to attack the signaler or not, or mate with the signaler or not) involve such binary choices.
机译:许多基于Zahavi残障原理的诚实信号模型都预测,如果接收者对显示信号器群中连续变化的质量感兴趣,那么信号强度的分布也将是连续的。但是,以前已经注意到,这种预测与许多信号系统中的经验观察结果不一致,在许多信号系统中,尽管信号性质不断变化,但信号被限制在少量的水平上。通常,特征具有临界值,在阈值一侧具有特征值的所有个体都使用相同的廉价信号,而在阈值另一侧具有特征值的所有个体都使用相同的昂贵信号。已经证明,如果另外假设接收机在评估信号强度时遭受感知错误,那么这些经典模型自然可以预测这种“全有或全无”信令。我们表明,如果接收机被限制为以两种方式之一响应信号,则也可以预测这种全有或全无的信令。我们建议,许多生态情况(例如决定是否攻击信号机,或是否与信号机交配)都涉及这种二元选择。

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