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The Drosophila TRPA1 Channel and Neuronal Circuits Controlling Rhythmic Behaviours and Sleep in Response to Environmental Temperature

机译:果蝇TRPA1通道和神经回路控制节律行为和睡眠对环境温度的响应。

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摘要

trpA1 encodes a thermosensitive transient receptor potential channel (TRP channel) that functions in selection of preferred temperatures and noxious heat avoidance. In this review, we discuss the evidence for a role of TRPA1 in the control of rhythmic behaviours in Drosophila melanogaster. Activity levels during the afternoon and rhythmic temperature preference are both regulated by TRPA1. In contrast, TRPA1 is dispensable for temperature synchronisation of circadian clocks. We discuss the neuronal basis of TRPA1-mediated temperature effects on rhythmic behaviours, and conclude that they are mediated by partly overlapping but distinct neuronal circuits. We have previously shown that TRPA1 is required to maintain siesta sleep under warm temperature cycles. Here, we present new data investigating the neuronal circuit responsible for this regulation. First, we discuss the difficulties that remain in identifying the responsible neurons. Second, we discuss the role of clock neurons (s-LNv/DN1 network) in temperature-driven regulation of siesta sleep, and highlight the role of TRPA1 therein. Finally, we discuss the sexual dimorphic nature of siesta sleep and propose that the s-LNv/DN1 clock network could play a role in the integration of environmental information, mating status and other internal drives, to appropriately drive adaptive sleep/wake behaviour.
机译:trpA1编码一个热敏瞬态受体电位通道(TRP通道),该通道在选择首选温度和避免有害热量方面起作用。在这篇综述中,我们讨论了TRPA1在控制果蝇节律行为中的作用的证据。下午的活动水平和有节奏的温度偏好均受TRPA1的调节。相反,TRPA1对于昼夜节律时钟的温度同步是必不可少的。我们讨论了TRPA1介导的温度对节律行为的神经元基础,并得出结论,它们是由部分重叠但截然不同的神经元回路介导的。先前我们已经表明,在温暖的温度循环下需要TRPA1来维持午睡。在这里,我们提出了调查负责该调节的神经元回路的新数据。首先,我们讨论在识别负责任的神经元方面仍然存在的困难。其次,我们讨论了时钟神经元(s-LNv / DN1网络)在午睡睡眠的温度驱动调节中的作用,并突出了其中的TRPA1的作用。最后,我们讨论了午睡睡眠的性二态性,并提出s-LNv / DN1时钟网络可以在环境信息,交配状态和其他内部驱动器的整合中发挥作用,以适当地驱动适应性睡眠/苏醒行为。

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