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叶蝉雄虫通过振动介导的配偶定位来补偿不明确的方向线索。

Leafhopper males compensate for unclear directional cues in vibration-mediated mate localization.

机构信息

Department of Organisms and Ecosystems Research, National Institute of Biology, Večna pot 111, Ljubljana, Slovenia.

Department of Biology, Biotechnical Faculty, University of Ljubljana, Jamnikarjeva 101, Ljubljana, Slovenia.

出版信息

Sci Rep. 2023 Jun 1;13(1):8879. doi: 10.1038/s41598-023-35057-z.

Abstract

Ambient noise and transmission properties of the substrate pose challenges in vibrational signal-mediated mating behavior of arthropods, because vibrational signal production is energetically demanding. We explored implications of these challenges in the leafhopper Aphrodes makarovi (Insecta: Hemiptera: Cicadellidae) by exposing males to various kinds of vibrational noise on a natural substrate and challenging them to find the source of the female playback. Contrary to expectations, males exposed to noise were at least as efficient as control males on account of similar searching success with less signaling effort, while playing back male-female duets allowed the males to switch to satellite behavior and locate the target without signaling, as expected. We found altered mitochondrial structure in males with high signaling effort that likely indicate early damaging processes at the cellular level in tymbal muscle, but no relation between biochemical markers of oxidative stress and signaling effort. Analysis of signal transmission revealed ambiguous amplitude gradients, which might explain relatively low searching success, but it also indicates the existence of behavioral adaptations to complex vibrational environments. We conclude that the observed searching tactic, emphasizing speed rather than thorough evaluation of directional cues, may compensate for unclear stimuli when the target is near.

摘要

环境噪声和基质的传输特性对节肢动物的振动信号介导的交配行为构成了挑战,因为振动信号的产生需要消耗大量能量。我们通过在自然基质上向雄性叶蝉 Aphrodes makarovi(昆虫纲:半翅目:叶蝉科)暴露各种振动噪声,并挑战它们找到雌性回放的来源,来探讨这些挑战的影响。与预期相反,由于信号努力相似,暴露于噪声中的雄性与对照组雄性一样有效,而播放雄性-雌性二重奏则允许雄性切换到卫星行为并在无需信号的情况下定位目标,这是预期的。我们发现,高信号努力的雄性的线粒体结构发生了改变,这可能表明在鼓膜肌肉的细胞水平上早期存在损伤过程,但氧化应激的生化标志物与信号努力之间没有关系。信号传输分析显示出模糊的幅度梯度,这可能解释了相对较低的搜索成功率,但也表明存在对复杂振动环境的行为适应。我们得出结论,观察到的搜索策略强调速度而不是对方向线索的彻底评估,当目标靠近时,可能会补偿不清晰的刺激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df09/10235090/85528adb50f6/41598_2023_35057_Fig1_HTML.jpg

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