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非昼夜节律神经元中的dTRPA1调节黑腹果蝇中温度依赖性节律活动。

dTRPA1 in Non-circadian Neurons Modulates Temperature-dependent Rhythmic Activity in Drosophila melanogaster.

作者信息

Das Antara, Holmes Todd C, Sheeba Vasu

机构信息

Behavioural Neurogenetics Laboratory, Evolutionary and Organismal Biology Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore, India.

Department of Physiology and Biophysics, University of California, Irvine, CA, USA.

出版信息

J Biol Rhythms. 2016 Jun;31(3):272-88. doi: 10.1177/0748730415627037. Epub 2016 Feb 11.

Abstract

In fruit flies Drosophila melanogaster, environmental cycles of light and temperature are known to influence behavioral rhythms through dedicated sensory receptors. But the thermosensory pathways and molecular receptors by which thermal cycles modulate locomotor activity rhythms remain unclear. Here, we report that neurons expressing warmth-activated ion channel Drosophila Transient Receptor Potential-A1 (dTRPA1) modulate distinct aspects of the rhythmic activity/rest rhythm in a light-dependent manner. Under light/dark (LD) cycles paired with constantly warm ambient conditions, flies deficient in dTRPA1 expression are unable to phase morning and evening activity bouts appropriately. Correspondingly, we show that electrical activity of a few neurons targeted by the dTRPA1(SH)-GAL4 driver modulates temperature-dependent phasing of activity/rest rhythm under LD cycles. The expression of dTRPA1 also affects behavior responses to temperature cycles combined with constant dark (DD) or light (LL) conditions. We demonstrate that the mid-day "siesta" exhibited by flies under temperature cycles in DD is dependent on dTRPA1 expression in a small number of neurons that include thermosensory anterior cell neurons. Although a small subset of circadian pacemaker neurons may express dTRPA1, we show that CRY-negative dTRPA1(SH)-GAL4 driven neurons are critical for the suppression of mid-thermophase activity, thus enabling flies to exhibit siesta. In contrast to temperature cycles in DD, under LL, dTRPA1 is not required for exhibiting siesta but is important for phasing of evening peak. Our studies show that activity/rest rhythms are modulated in a temperature-dependent manner via signals from dTRPA1(SH)-GAL4 driven neurons. Taken together, these results emphasize the differential influence of thermoreceptors on rhythmic behavior in fruit flies in coordination with light inputs.

摘要

在果蝇黑腹果蝇中,已知光和温度的环境周期通过专门的感官受体影响行为节律。但是,热循环调节运动活动节律的热感觉通路和分子受体仍不清楚。在这里,我们报告说,表达温暖激活离子通道果蝇瞬时受体电位-A1(dTRPA1)的神经元以光依赖的方式调节节律性活动/休息节律的不同方面。在与持续温暖的环境条件配对的光/暗(LD)周期下,dTRPA1表达缺陷的果蝇无法适当地安排早晚活动时段。相应地,我们表明,dTRPA1(SH)-GAL4驱动程序靶向的少数神经元的电活动在LD周期下调节活动/休息节律的温度依赖性相位。dTRPA1的表达也影响对与恒定黑暗(DD)或光照(LL)条件相结合的温度周期的行为反应。我们证明,果蝇在DD中的温度周期下表现出的中午“午睡”取决于少数神经元中的dTRPA1表达,这些神经元包括热感觉前细胞神经元。尽管一小部分昼夜节律起搏器神经元可能表达dTRPA1,但我们表明,CRY阴性dTRPA1(SH)-GAL4驱动的神经元对于抑制热相中活动至关重要,从而使果蝇能够表现出午睡。与DD中的温度周期相反,在LL下,dTRPA1对于表现出午睡不是必需的,但对于晚上高峰的相位很重要。我们的研究表明,活动/休息节律通过来自dTRPA1(SH)-GAL4驱动的神经元的信号以温度依赖的方式进行调节。综上所述,这些结果强调了热感受器与光输入协同作用对果蝇节律行为的不同影响。

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