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Morning and evening peaks of activity rely on different clock neurons of the Drosophila brain

机译:早晨和傍晚的活动高峰依赖于果蝇大脑的不同时钟神经元

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In Drosophila, a 'clock' situated in the brain controls circadian rhythms of locomotor activity. This clock relies on several groups of neurons that express the Period ( PER) protein, including the ventral lateral neurons (LN(v)s), which express the Pigment-dispersing factor (PDF) neuropeptide, and the PDF-negative dorsal lateral neurons (LN(d)s)(1). In normal cycles of day and night, adult flies exhibit morning and evening peaks of activity(1,2); however, the contribution of the different clock neurons to the rest activity pattern remains unknown. Here, we have used targeted expression of PER to restore the clock function of specific subsets of lateral neurons in arrhythmic per 0 mutant flies. We show that PER expression restricted to the LNvs only restores the morning activity, whereas expression of PER in both the LNvs and LNds also restores the evening activity. This provides the first neuronal bases for 'morning' and 'evening' oscillators in the Drosophila brain. Furthermore, we show that the LNvs alone can generate 24 h activity rhythms in constant darkness, indicating that the morning oscillator is sufficient to drive the circadian system.
机译:在果蝇中,位于大脑中的“时钟”控制着运动活动的昼夜节律。此时钟依赖于表达Period(PER)蛋白的几组神经元,包括表达色素分散因子(PDF)神经肽的腹侧神经元(LN(v)s)和PDF负侧神经元(LN(d)s)(1)。在白天和夜晚的正常周期中,成年苍蝇的早,晚活动高峰(1,2);然而,不同的时钟神经元对休息活动模式的贡献仍然未知。在这里,我们已经使用PER的靶向表达来恢复每0个突变果蝇的心律失常中侧神经元特定子集的时钟功能。我们表明,限于LNvs的PER表达只能恢复早晨的活动,而在LNvs和LNds两者中PER的表达也可以恢复夜间的活动。这为果蝇大脑中的“早上”和“晚上”振荡器提供了第一个神经元基础。此外,我们表明,仅LNvs就能在恒定的黑暗中产生24小时的活动节律,这表明早晨振荡器足以驱动昼夜节律。

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