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How Swift Is Cry-Mediated Magnetoreception? Conditioning in an American Cockroach Shows Sub-second Response

机译:啼声介导的磁感受有多快?美国蟑螂的调理显示亚秒级反应

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摘要

Diverse animal species perceive Earth’s magnetism and use their magnetic sense to orientate and navigate. Even non-migrating insects such as fruit flies and cockroaches have been shown to exploit the flavoprotein Cryptochrome (Cry) as a likely magnetic direction sensor; however, the transduction mechanism remains unknown. In order to work as a system to steer insect flight or control locomotion, the magnetic sense must transmit the signal from the receptor cells to the brain at a similar speed to other sensory systems, presumably within hundreds of milliseconds or less. So far, no electrophysiological or behavioral study has tackled the problem of the transduction delay in case of Cry-mediated magnetoreception specifically. Here, using a novel aversive conditioning assay on an American cockroach, we show that magnetic transduction is executed within a sub-second time span. A series of inter-stimulus intervals between conditioned stimuli (magnetic North rotation) and unconditioned aversive stimuli (hot air flow) provides original evidence that Cry-mediated magnetic transduction is sufficiently rapid to mediate insect orientation.
机译:多样的动物物种感知地球的磁力,并利用其磁力来定向和导航。研究表明,即使是非迁徙的昆虫,例如果蝇和蟑螂,也都利用黄素隐色氨酸(Cry)作为可能的磁性方向传感器。但是,转导机制仍然未知。为了用作控制昆虫飞行或控制运动的系统,磁感必须以与其他感觉系统相似的速度(大概在数百毫秒或更短的时间内)将信号从受体细胞传输到大脑。迄今为止,还没有任何电生理或行为学研究能够解决Cry介导的磁感受障碍的转导延迟问题。在这里,使用对美国蟑螂的新型厌恶性条件测定,我们显示了磁转导在不到一秒的时间跨度内执行。在条件刺激(磁北极旋转)和非条件厌恶刺激(热气流)之间的一系列刺激间隔提供了原始证据,表明Cry介导的磁转导足够迅速以介导昆虫定向。

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