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发报者困境:公共和私人通信的成本效益分析。

The signaller's dilemma: a cost-benefit analysis of public and private communication.

机构信息

Zoology, Karl-Franzens-University, Graz, Austria.

出版信息

PLoS One. 2010 Oct 13;5(10):e13325. doi: 10.1371/journal.pone.0013325.

Abstract

BACKGROUND

Understanding the diversity of animal signals requires knowledge of factors which may influence the different stages of communication, from the production of a signal by the sender up to the detection, identification and final decision-making in the receiver. Yet, many studies on signalling systems focus exclusively on the sender, and often ignore the receiver side and the ecological conditions under which signals evolve.

METHODOLOGY/PRINCIPAL FINDINGS: We study a neotropical katydid which uses airborne sound for long distance communication, but also an alternative form of private signalling through substrate vibration. We quantified the strength of predation by bats which eavesdrop on the airborne sound signal, by analysing insect remains at roosts of a bat family. Males do not arbitrarily use one or the other channel for communication, but spend more time with private signalling under full moon conditions, when the nocturnal rainforest favours predation by visually hunting predators. Measurements of metabolic CO(2)-production rate indicate that the energy necessary for signalling increases 3-fold in full moon nights when private signalling is favoured. The background noise level for the airborne sound channel can amount to 70 dB SPL, whereas it is low in the vibration channel in the low frequency range of the vibration signal. The active space of the airborne sound signal varies between 22 and 35 meters, contrasting with about 4 meters with the vibration signal transmitted on the insect's favourite roost plant. Signal perception was studied using neurophysiological methods under outdoor conditions, which is more reliable for the private mode of communication.

CONCLUSIONS/SIGNIFICANCE: Our results demonstrate the complex effects of ecological conditions, such as predation, nocturnal ambient light levels, and masking noise levels on the performance of receivers in detecting mating signals, and that the net advantage or disadvantage of a mode of communication strongly depends on these conditions.

摘要

背景

了解动物信号的多样性需要了解可能影响信号传递的不同阶段的因素,从发送者发出信号到接收者的检测、识别和最终决策。然而,许多关于信号系统的研究仅关注发送者,并且经常忽略接收者和信号进化的生态条件。

方法/主要发现:我们研究了一种使用空气传播声音进行长距离通讯的新热带蟋蟀,但也研究了一种通过基质振动进行的替代形式的私人信号。我们通过分析蝙蝠栖息处的昆虫残骸,量化了蝙蝠对空气传播声音信号的捕食强度,蝙蝠会偷听这种声音信号。雄性不会随意使用一种或另一种通道进行通讯,而是在满月条件下更多地进行私人信号,因为此时夜间雨林有利于视觉捕猎的捕食者捕食。代谢 CO2 产生率的测量表明,当偏好私人信号时,在满月夜晚进行信号所需的能量增加了 3 倍。空气传播声音通道的背景噪声水平可达 70 dB SPL,而在振动信号的低频范围内,振动通道的背景噪声水平较低。空气传播声音信号的有效传播范围在 22 到 35 米之间,而在昆虫喜欢的栖息地植物上传输的振动信号的有效传播范围只有约 4 米。我们使用户外的神经生理方法研究了信号感知,这种方法对于私人通讯模式更为可靠。

结论/意义:我们的研究结果表明,生态条件(如捕食、夜间环境光水平和掩蔽噪声水平)对接收者检测交配信号的性能具有复杂的影响,并且一种通讯模式的净优势或劣势强烈取决于这些条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be41/2954168/d32c32a70c67/pone.0013325.g001.jpg

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