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首页> 外文期刊>Zoological Science >A temperature-dependent timing mechanism is involved in the circadian system that drives locomotor rhythms in the fruit fly Drosophila melanogaster
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A temperature-dependent timing mechanism is involved in the circadian system that drives locomotor rhythms in the fruit fly Drosophila melanogaster

机译:昼夜节律系统涉及温度依赖的计时机制,该机制驱动果蝇果蝇的运动节律。

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The circadian clock of Drosophila melanogasteris thought to include rhythmic expression of period gene. Recent studies suggested, however, that a per-less oscillation is also involved in the regulation of circadian locomotor rhythms. In the present study, we examined the existence and the property of the possible per-less oscillation using arrhythmic clock mutant flies carrying per(01), tim(01), dClk(Jrk) or cyc(01), which lack rhythmic per expression. When temperature cycles consisting of 25 C and 30 C with various periods (T=8similar to32 hr) were given, wild-type (Canton-S) flies showed locomotor rhythms entrained to temperature cycles over a wide range of period (T=8similar to32 hr) in constant light (LL) while only to T=24 hr in constant darkness (DD). The mutant flies showed rhythms synchronizing with the given cycle both under LL and DD. In per(01) and tim(01) flies, the phase of a major peak slightly changed dependent on Ts in DD, while it did not in dClk(Jrk) and cyc(01) flies. When they were transferred from a constant temperature to a temperature cycle under DD, several cycles were necessary to establish a clear temperature entrainment in per(01) and tim(01) flies. These results suggest that per(01) and tim(01) flies have a temperature-entrainable weak oscillatory mechanism and that the per-less oscillatory mechanism may require dClk and cyc. In addition, per(01) and tim(01) flies changed from thermoactive in DD to cryoactive in LL, while dClk(Jrk) and cyc(01) flies did not. It is thus suggested that dClk and cyc are also involved in determining the light-associated temperature preference in per(01) and tim(01) flies.
机译:果蝇的生物钟被认为包括周期基因的节律性表达。然而,最近的研究表明,逐日振荡也参与了昼夜运动节律的调节。在本研究中,我们检查了使用带有per(01),tim(01),dClk(Jrk)或cyc(01)的心律失常的时钟突变体蝇的存在及其性质,该蝇具有无节奏的表达。当给出由25 C和30 C组成的温度周期并具有不同的时间段(T = 8类似于32小时)时,野生型(Canton-S)苍蝇表现出在宽范围的时间段内都伴随着温度周期的运动节律(T = 8类似于32) hr)在恒定光照(LL)下,而仅在T = 24 hr在恒定黑暗(DD)下。突变果蝇在LL和DD下均显示出与给定周期同步的节律。在per(01)和tim(01)苍蝇中,主要峰的相位根据DD中的Ts略有变化,而在dClk(Jrk)和cyc(01)苍蝇中则没有。当它们从DD的恒定温度转移到温度循环时,需要几个循环才能在per(01)和tim(01)蝇中建立清晰的温度夹带。这些结果表明,per(01)和tim(01)蝇具有温度可携带的弱振荡机制,而per-less振荡机制可能需要dClk和cyc。此外,per(01)和tim(01)的蝇从DD的热活性变为LL的冷冻活性,而dClk(Jrk)和cyc(01)的蝇没有活性。因此建议dClk和cyc也参与确定per(01)和tim(01)蝇的光关联温度偏好。

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