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The after-hours circadian mutant has reduced phenotypic plasticity in behaviors at multiple timescales and in sleep homeostasis

机译:下班后的昼夜节律突变体在多个时间尺度上的行为和睡眠稳态方面降低了表型可塑性

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摘要

Circadian clock is known to adapt to environmental changes and can significantly influence cognitive and physiological functions. In this work, we report specific behavioral, cognitive, and sleep homeostatic defects in the after hours (Afh) circadian mouse mutant, which is characterized by lengthened circadian period. We found that the circadian timing irregularities in Afh mice resulted in higher interval timing uncertainty and suboptimal decisions due to incapability of processing probabilities. Our phenotypic observations further suggested that Afh mutants failed to exhibit the necessary phenotypic plasticity for adapting to temporal changes at multiple time scales (seconds-to-minutes to circadian). These behavioral effects of Afh mutation were complemented by the specific disruption of the Per/Cry circadian regulatory complex in brain regions that govern food anticipatory behaviors, sleep, and timing. We derive statistical predictions, which indicate that circadian clock and sleep are complementary processes in controlling behavioral/cognitive performance during 24 hrs. The results of this study have pivotal implications for understanding how the circadian clock modulates sleep and behavior.
机译:已知昼夜节律时钟能适应环境变化,并能显着影响认知和生理功能。在这项工作中,我们报告后几小时(Afh)昼夜节律小鼠突变体中特定的行为,认知和睡眠稳态缺陷,其特点是昼夜节律周期延长。我们发现,Afh小鼠的昼夜节律时序不规则会导致较高的间隔时序不确定性,并且由于无法处理概率而导致次优决策。我们的表型观察结果进一步表明,Afh突变体未能表现出必要的表型可塑性,无法适应多种时间尺度(从昼夜节律到秒)的时间变化。 Afh突变的这些行为效应通过控制食物预期行为,睡眠和时间安排的大脑区域中Per / Cry昼夜节律调节复合物的特异性破坏而得到补充。我们得出的统计预测表明,昼夜节律时钟和睡眠是在24小时内控制行为/认知表现的互补过程。这项研究的结果对于理解生物钟如何调节睡眠和行为具有关键意义。

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