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The search for circadian clock components in humans: new perspectives for association studies

机译:寻找人类昼夜节律的组成部分:关联研究的新视角

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Individual circadian clocks entrain differently to environmental cycles (zeitgebers, e.g., light and darkness), earlier or later within the day, leading to different chronotypes. In human populations, the distribution of chronotypes forms a bell-shaped curve, with the extreme early and late types _ larks and owls, respectively _ at its ends. Human chronotype, which can be assessed by the timing of an individual's sleep-wake cycle, is partly influenced by genetic factors - known from animal experimentation. Here, we review population genetic studies which have used a questionnaire probing individual daily timing preference for associations with polymorphisms in clock genes. We discuss their inherent limitations and suggest an alternative approach combining a short questionnaire (Munich ChronoType Questionnaire, MCTQ), which assesses chronotype in a quantitative manner, with a genome-wide analysis (GWA). The advantages of these methods in comparison to assessing time-of-day preferences and single nucleotide polymorphism genotyping are discussed. In the future, global studies of chronotype using the MCTQ and GWA may also contribute to understanding the influence of seasons, latitude (e.g., different photoperiods), and climate on allele frequencies and chronotype distribution in different populations.
机译:各个昼夜节律钟在一天中的早些时候或晚些时候随环境周期(例如光和暗)的环境周期而变化,从而导致不同的表型。在人类中,表型的分布形成了钟形曲线,其早期和晚期类型分别为百灵鸟和猫头鹰。人类的表型可以通过个体的睡眠-觉醒周期的时间来评估,部分受遗传因素的影响-从动物实验中得知。在这里,我们回顾了人口遗传学研究,该研究已使用调查表调查了个人每日定时偏好与时钟基因多态性的关联。我们讨论了它们的固有局限性,并提出了一种替代方法,该方法将简短的问卷(慕尼黑计时型问卷,MCTQ)与全基因组分析(GWA)结合起来,该问卷以定量方式评估计时型。讨论了这些方法与评估每日时间偏好和单核苷酸多态性基因分型相比的优势。将来,使用MCTQ和GWA对表型进行的全球研究也可能有助于理解季节,纬度(例如不同的光周期)和气候对不同人群中等位基因频率和表型分布的影响。

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