首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >From the Cover: Mechanosensory hairs in bumblebees (Bombus terrestris) detect weak electric fields
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From the Cover: Mechanosensory hairs in bumblebees (Bombus terrestris) detect weak electric fields

机译:从封面:大黄蜂(Bombus terrestris)的机械感测毛发检测到弱电场

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摘要

Bumblebees (Bombus terrestris) use information from surrounding electric fields to make foraging decisions. Electroreception in air, a nonconductive medium, is a recently discovered sensory capacity of insects, yet the sensory mechanisms remain elusive. Here, we investigate two putative electric field sensors: antennae and mechanosensory hairs. Examining their mechanical and neural response, we show that electric fields cause deflections in both antennae and hairs. Hairs respond with a greater median velocity, displacement, and angular displacement than antennae. Extracellular recordings from the antennae do not show any electrophysiological correlates to these mechanical deflections. In contrast, hair deflections in response to an electric field elicited neural activity. Mechanical deflections of both hairs and antennae increase with the electric charge carried by the bumblebee. From this evidence, we conclude that sensory hairs are a site of electroreception in the bumblebee.
机译:大黄蜂(Bombus terrestris)利用周围电场的信息做出觅食决策。空气(一种非导电性介质)中的电接收是昆虫最近发现的感觉能力,但感觉机制仍然难以捉摸。在这里,我们研究了两个假定的电场传感器:触角和机械感测毛发。检查它们的机械和神经反应,我们发现电场引起触角和毛发偏斜。毛发比触角具有更大的中位速度,位移和角位移。来自触角的细胞外记录没有显示出与这些机械偏转有关的任何电生理学相关性。相反,响应于电场的头发挠曲引起神经活动。毛发和触角的机械挠度都随着大黄蜂携带的电荷而增加。根据这一证据,我们得出结论,感觉毛是大黄蜂中的电感受位点。

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