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Tremulatory and Abdomen Vibration Signals Enable Communication through Air in the Stink Bug Euschistus heros

机译:颤抖和腹部振动信号使臭臭虫Euschistus英雄能够通过空中进行通信

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摘要

Communication by substrate-borne mechanical signals is widespread among animals but remains one of their least understood communication channels. Past studies of vibrational communication in insects have been oriented predominantly to communication during mating, showing that species- and sex-specific vibrational signals enable recognition and localization of potential mates on continuous solid substrates. No special attention has been paid to vibrational signals with less obvious specificity as well as to the possibility of vibrational communication across substrates that are not in physical contact. We aimed to reinvestigate emission of the aforementioned vibrational signals transmitted through a plant in the stink bug Euschistus heros (Pentatomidae: Pentatominae) and to check whether individuals are able to communicate across adjecent, physically separated substrates. We used laser vibrometry for registration of substrate-borne vibrational signals on a bean plant. Using two bean plants separated for 3 to 7 cm between two most adjacent leaves, we investigated the possibility of transmission of these signals through air. Our study showed that males and females of E. heros communicate using tremulatory, percussion and buzzing signals in addition to the previously described signals produced by vibrations of the abdomen. Contrary to the latter, the first three signal types did not differ between sexes or between pentatomid species. Experiments with two physically separated plants showed significant searching behaviour and localization of vibrational signals of an E. heros male or a female, in response to abdominal vibration produced signals of a pair duetting on the neighbouring plant, in comparison to control where no animals were on the neighbouring plant. We also confirmed that transmission through air causes amplitude and frequency decay of vibrational signals, which suggests high-amplitude, low-frequency tremulatory signals of these stink bugs their most plausible way of communication across discontinuous substrates.
机译:通过底物传播的机械信号进行的交流在动物中很普遍,但仍然是它们鲜为人知的交流渠道之一。过去对昆虫振动传播的研究主要针对交配过程中的传播,这表明特定物种和特定性别的振动信号可以识别和定位连续固体基质上的潜在伴侣。没有特别注意具有不太明显的特异性的振动信号以及跨非物理接触的基板的振动通信的可能性。我们的目标是重新研究通过臭虫Euschistus英雄(Pentatomidae:Pentatominae)的植物传播的上述振动信号的发射,并检查个人是否能够在相邻的,物理上分离的基质上进行交流。我们使用激光振动测定法来记录豆类植物上基质传播的振动信号。我们使用两颗最相邻的叶子之间隔开3至7厘米的豆类植物,研究了这些信号通过空气传播的可能性。我们的研究表明,除了先前描述的腹部振动产生的信号外,E。英雄的男性和女性还使用震颤,敲击和嗡嗡声进行交流。与后者相反,前三种信号类型在性别之间或五类昆虫物种之间没有差异。用两种物理上分离的植物进行的实验表明,与不饲养动物的对照组相比,响应腹部振动,一对雌雄同体的雄性或雌性的显着搜索行为和振动信号的定位都与相邻植物上的一对二重奏信号相对应。邻近的植物。我们还证实了通过空气的传播会引起振动信号的振幅和频率衰减,这表明这些臭虫的高振幅,低频振动信号是它们在不连续基板之间进行通信的最合理的方式。

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