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极薄鼓膜听力:恩颚蟋的耳形态和鼓膜振动。

Hearing with exceptionally thin tympana: Ear morphology and tympanal membrane vibrations in eneopterine crickets.

机构信息

Department of Zoology, University of Graz, Universitaetsplatz 2, 8010, Graz, Austria.

Institut de Systématique, Evolution et Biodiversité, ISYEB - UMR 7205, CNRS MNHN UPMC EPHE, Muséum national d'Histoire naturelle, Sorbonne Universités, CP 50 (Entomologie), 75231, Paris, Cedex 05, France.

出版信息

Sci Rep. 2017 Nov 10;7(1):15266. doi: 10.1038/s41598-017-15282-z.

Abstract

The receiver sensory system plays a crucial role in the evolution of new communication signals in insects. Among acoustic communicating crickets, the tribe Lebinthini (Eneopterinae) has evolved a unique communication system in that males produce exceptionally high-frequency calls and females respond with vibratory signals to guide males towards them. In this study, we describe nine species of Eneopterinae in which the sound receiving structures have undergone considerable morphological changes. We revealed that the anterior tympanal membrane (ATM) of the ear was extremely thin, as little as 0.35 µm thick, and to the best of our knowledge, this is the thinnest tympanal membrane found in crickets thus far. Measurements of tympanum vibrations obtained from Lebinthus bitaeniatus demonstrated a strong sensitivity towards higher frequencies. The finding also coincides with the neuronal tuning of ascending neurons and the behavioural response of the Lebinthini. The morphologically specialized ATM and its mechanical sensitivity for high frequencies, therefore, may have driven the sensory exploitation of an anti-predator behaviour that led to the evolution of a new communication system known for this group of crickets. The hypothetical phylogenetic origin of the investigated tympanal ears is discussed.

摘要

接收器感觉系统在昆虫新通讯信号的进化中起着至关重要的作用。在发声交流的蟋蟀中,Lebinthini 族(Eneopterinae)在雄性产生异常高频叫声,而雌性则以振动信号回应以引导雄性靠近的独特通讯系统方面已经进化。在本研究中,我们描述了 Eneopterinae 中的 9 个物种,这些物种的听觉接收结构发生了相当大的形态变化。我们发现,耳朵的前鼓膜(ATM)非常薄,只有 0.35µm 厚,据我们所知,这是迄今为止蟋蟀中最薄的鼓膜。从 Lebinthus bitaeniatus 获得的鼓膜振动测量显示出对高频的强烈敏感性。这一发现与上升神经元的神经元调谐和 Lebinthini 的行为反应相吻合。因此,形态上专门化的 ATM 及其对高频的机械敏感性可能推动了对一种抗捕食行为的感觉利用,这种行为导致了一种新的通讯系统的进化,这种蟋蟀群以这种通讯系统而闻名。讨论了所研究鼓膜耳的假设系统发育起源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3731/5681576/732f9ef360f1/41598_2017_15282_Fig1_HTML.jpg

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