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振动景观分析揭示了穴居狼蛛的声栖位重叠和振动求偶信号的可塑性改变。

Vibroscape analysis reveals acoustic niche overlap and plastic alteration of vibratory courtship signals in ground-dwelling wolf spiders.

机构信息

School of Biological Sciences, University of Nebraska-Lincoln, Lincoln, NE, USA.

Max Planck Institute of Animal Behavior, Konstanz, Germany.

出版信息

Commun Biol. 2024 Jan 5;7(1):23. doi: 10.1038/s42003-023-05700-6.

Abstract

To expand the scope of soundscape ecology to encompass substrate-borne vibrations (i.e. vibroscapes), we analyzed the vibroscape of a deciduous forest floor using contact microphone arrays followed by automated processing of large audio datasets. We then focused on vibratory signaling of ground-dwelling Schizocosa wolf spiders to test for (i) acoustic niche partitioning and (ii) plastic behavioral responses that might reduce the risk of signal interference from substrate-borne noise and conspecific/heterospecific signaling. Two closely related species - S. stridulans and S. uetzi - showed high acoustic niche overlap across space, time, and dominant frequency. Both species show plastic behavioral responses - S. uetzi males shorten their courtship in higher abundance of substrate-borne noise, S. stridulans males increased the duration of their vibratory courtship signals in a higher abundance of conspecific signals, and S. stridulans males decreased vibratory signal complexity in a higher abundance of S. uetzi signals.

摘要

为了将声音景观生态学的范围扩展到包含基质传播振动(即振动景观),我们使用接触式麦克风阵列分析了落叶林底层的振动景观,然后对大型音频数据集进行自动化处理。然后,我们专注于地面栖息的狼蛛的振动信号,以测试(i)声学生态位分离和(ii)可能降低基质传播噪声和同种/异种信号干扰信号风险的塑性行为反应。两种密切相关的物种 - S. stridulans 和 S. uetzi - 在空间、时间和主导频率上表现出高度的声学生态位重叠。这两个物种都表现出塑性行为反应 - S. uetzi 雄性在基质传播噪声较高的情况下缩短求偶时间,S. stridulans 雄性在同种信号较多的情况下增加振动求偶信号的持续时间,而 S. stridulans 雄性在 S. uetzi 信号较多的情况下降低振动信号的复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8e7/10770364/829ef1a287bd/42003_2023_5700_Fig1_HTML.jpg

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