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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Vibration detection and discrimination in the masked birch caterpillar (Drepana arcuata)
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Vibration detection and discrimination in the masked birch caterpillar (Drepana arcuata)

机译:蒙面桦木毛毛虫(Drepana arcuata)的振动检测和判别

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Leaf-borne vibrations are potentially important to caterpillars for communication and risk assessment. Yet, little is known about the vibratory environment of caterpillars, or how they detect and discriminate between vibrations from relevant and non-relevant sources. We measured the vibratory 'landscape' of the territorial masked birch caterpillar Drepana arcuata (Drepanidae), and assessed its ability to detect and respond to vibrations generated by conspecific and predatory intruders, wind and rain. Residents of leaf shelters were shown to respond to low amplitude vibrations generated by a crawling conspecific intruder, since removal of the vibrations through leaf incision prevented the resident's response. Residents did not respond to large amplitude, low frequency disturbances caused by wind and rain alone, but did respond to approaching conspecifics under windy conditions, indicating an ability to discriminate between these sources. Residents also responded differently in the presence of vibrations generated by approaching predators (Podisus) and conspecifics. An analysis of vibration characteristics suggests that despite significant overlap between vibrations from different sources, there are differences in frequency and amplitude characteristics that caterpillars may use to discriminate between sources. Caterpillars live in a vibration-rich environment that we argue forms a prominent part of the sensory world of substrate bound holometabolous larvae.
机译:叶传播的振动对于毛毛虫进行交流和风险评估可能非常重要。然而,关于毛虫的振动环境,或它们如何检测和区分来自相关源和非相关源的振动的知之甚少。我们测量了领土被遮盖的桦树毛毛虫Drepana arcuata(Drepanidae)的振动“景观”,并评估了其检测和响应同种和掠食性入侵者,风和雨水产生的振动的能力。由于通过叶片切口去除振动,阻止了居民的反应,因此显示了叶子掩蔽所的居民对爬行的同种入侵者产生的低振幅振动有反应。居民没有对仅由风和雨引起的大振幅,低频干扰做出反应,而是对有风条件下接近的种作出了反应,表明有能力区分这些来源。居民在接近掠食者(波迪萨斯)和同种动物而产生的振动中的反应也不同。对振动特性的分析表明,尽管来自不同源的振动之间存在明显的重叠,但毛虫可能会使用频率和振幅特性来区分源。毛毛虫生活在充满振动的环境中,我们认为这是基质结合的全脂幼虫感官世界的重要组成部分。

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