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首页> 外文期刊>Ecology and Evolution >Beyond temperature coupling: Effects of temperature on ectotherm signaling and mate choice and the implications for communication in multispecies assemblages
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Beyond temperature coupling: Effects of temperature on ectotherm signaling and mate choice and the implications for communication in multispecies assemblages

机译:超越温度耦合:温度对等温信号传导和配偶选择的影响以及多物种组合中的交流影响

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Abstract Many organisms share communication channels, generating complex signaling environments that increase the risk of signal interference. Variation in abiotic conditions, such as temperature, may further exacerbate signal interference, particularly in ectotherms. We tested the effects of temperature on the pulse rate of male signals in a community of Oecanthus tree crickets, and for one focal species we also assessed its effect on female pulse rate preferences and motivation to seek mates. We confirm prior findings of temperature-dependent signals that result in increasing signal similarity at lower temperatures. Temperature also affected several aspects of female preferences: The preferred pulse rate value was temperature dependent, and nearly perfectly coupled with signal pulse rate; the range of pulse rate values that females found attractive also increased with temperature. By contrast, the motivation of females to perform phonotaxis was unaffected by temperature. Thus, at lower temperatures the signals of closely related species were more similar and females more discriminating. However, because signal similarity increased more strongly than female discrimination, signal interference and the likelihood of mismating may increase as temperatures drop. We suggest that a community approach will be useful for understanding the role of environmental variability in the evolution of communication systems.
机译:摘要许多生物共享通信通道,从而产生复杂的信号环境,从而增加了信号干扰的风险。非生物条件(例如温度)的变化可能会进一步加剧信号干扰,尤其是在放热中。我们测试了温度对八角hu树community群落中雄性信号脉冲率的影响,对于一个重点物种,我们还评估了其对雌性脉率偏好和寻求伴侣的动机的影响。我们确认了温度相关信号的先前发现,这些结果导致在较低温度下信号相似性增加。温度还影响女性偏好的几个方面:首选的脉搏率值取决于温度,并且几乎与信号脉搏率完美耦合;女性发现诱人的脉搏频率值范围也随温度增加。相比之下,女性进行口音的动机不受温度的影响。因此,在较低温度下,密切相关物种的信号更相似,而雌性则更具区分性。但是,由于信号相似度比女性分辨力更强地增加,因此随着温度下降,信号干扰和误配的可能性可能会增加。我们建议使用社区方法来理解环境可变性在通信系统演进中的作用。

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