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Role for Circadian Clock Genes in Seasonal Timing: Testing the Bünning Hypothesis

机译:昼夜节律基因在季节性定时中的作用:检验邦宁假说

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摘要

A major question in chronobiology focuses around the “Bünning hypothesis” which implicates the circadian clock in photoperiodic (day-length) measurement and is supported in some systems (e.g. plants) but disputed in others. Here, we used the seasonally-regulated thermotolerance of Drosophila melanogaster to test the role of various clock genes in day-length measurement. In Drosophila, freezing temperatures induce reversible chill coma, a narcosis-like state. We have corroborated previous observations that wild-type flies developing under short photoperiods (winter-like) exhibit significantly shorter chill-coma recovery times (CCRt) than flies that were raised under long (summer-like) photoperiods. Here, we show that arrhythmic mutant strains, per01, tim01 and ClkJrk, as well as variants that speed up or slow down the circadian period, disrupt the photoperiodic component of CCRt. Our results support an underlying circadian function mediating seasonal daylength measurement and indicate that clock genes are tightly involved in photo- and thermo-periodic measurements.
机译:时间生物学的一个主要问题集中在“Bünning假说”上,该假说暗示了昼夜节律在光周期(日长)测量中,在某些系统(例如植物)中得到支持,但在其他系统中受到争议。在这里,我们使用果蝇的季节性调节的耐热性来测试各种时钟基因在日长测量中的作用。在果蝇中,冰冻温度引起可逆的寒冷昏迷,即类似麻醉的状态。我们已经证实了先前的观察结果,即在短光周期(冬季样)下发育的野生型果蝇的冷昏迷恢复时间(CCRt)比在长光周期(夏季样)下培育的果蝇显着更短。在这里,我们显示了心律失常突变株per 01 ,tim 01 和Clk Jrk ,以及加快或减慢昼夜节律周期,破坏CCRt的光周期成分。我们的研究结果支持潜在的昼夜节律功能介导季节性日长测量,并表明时钟基因紧密参与光周期和热周期测量。

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