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Identifying Cellular and Molecular Mechanisms for Magnetosensation
Annual Review of Neuroscience ( IF 13.9 ) Pub Date : 2017-08-03 00:00:00 , DOI: 10.1146/annurev-neuro-072116-031312
Benjamin L. Clites 1 , Jonathan T. Pierce 1
Affiliation  

Diverse animals ranging from worms and insects to birds and turtles perform impressive journeys using the magnetic field of the earth as a cue. Although major cellular and molecular mechanisms for sensing mechanical and chemical cues have been elucidated over the past three decades, the mechanisms that animals use to sense magnetic fields remain largely mysterious. Here we survey progress on the search for magnetosensory neurons and magnetosensitive molecules important for animal behaviors. Emphasis is placed on magnetosensation in insects and birds, as well as on the magnetosensitive neuron pair AFD in the nematode Caenorhabditis elegans. We also review conventional criteria used to define animal magnetoreceptors and suggest how approaches used to identify receptors for other sensory modalities may be adapted for magnetoreceptors. Finally, we discuss prospects for underutilized and novel approaches to identify the elusive magnetoreceptors in animals.

中文翻译:


识别磁传感的细胞和分子机制

从蠕虫,昆虫到鸟类和乌龟,各种各样的动物利用地球的磁场作为线索,进行了令人印象深刻的旅程。尽管在过去的三十年中已经阐明了感知机械和化学线索的主要细胞和分子机制,但是动物用来感知磁场的机制在很大程度上仍然是神秘的。在这里,我们调查了对于动物行为重要的磁感神经元和磁敏分子的搜索进展。重点放在昆虫和鸟类的磁感测以及线虫秀丽隐杆线虫的磁敏神经元对AFD上。我们还回顾了用于定义动物磁感受器的常规标准,并提出了如何将用于识别其他感觉模态的感受器的方法应用于磁感受器。最后,我们讨论了利用不足的新颖方法鉴定动物中难捉摸的磁受体的前景。

更新日期:2017-08-03
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