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Circadian system heritability as assessed by wrist temperature: A twin study

机译:通过腕部温度评估的昼夜节律系统遗传力:一项孪生研究

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Previous research shows that wrist temperature (WT) is a good marker to assess the circadian system health in different circumstances. However, no studies have been performed in order to know the genetic component of this circadian marker. For this purpose, the aim was to determine, using classical twin models, the relative genetic and environmental influences on WT. The study was performed in 53 pairs of female twins (28 monozygotic (MZ) and 25 dizygotic (DZ)), with a body mass index 25.9 +/- 3.78 and mean age 52 +/- 6 years. The sample was selected from the Murcia Twin Register. Circadian patterns were studied by analyzing WT during one week every 10 min "Circadianware (R)". Genetic influences to WT variability were estimated by comparing correlations of MZ and DZ twin pairs and fitting genetic structural equation models to measured variables. MZ twins showed higher intra-pair correlations than DZ twins for most of the parameters. Genetic factors were responsible for between 46% and 70% of variance (broad sense heritability) in parameters such as mean temperature, mesor, acrophase, Rayleigh test, percentage of rhythmicity and five hours of maximum temperature. The pattern of correlations and the genetic models point to moderate to high heritability for most of the WT parameters, suggesting a relevant genetic influence. The presence of these genetic factors points to endogenicity as the main cause of the coincidence of the WT rhythms. However, some WT parameters are still dependent on environment to a relevant extent and, hence, more amenable to change through external interventions.
机译:先前的研究表明,腕温(WT)是评估不同情况下昼夜节律系统健康的良好标志。但是,尚未进行任何研究来了解该生物钟标记的遗传成分。为此,目的是使用经典的孪生模型确定对野生型的相对遗传和环境影响。该研究在53对雌性双胞胎中进行(28个单卵(MZ)和25个双卵(DZ)),体重指数为25.9 +/- 3.78,平均年龄为52 +/- 6岁。该样本选自穆尔西亚双胞胎登记册。通过在每10分钟的“ Circadianware(R)”中分析WT来研究昼夜节律模式。通过比较MZ和DZ双胞胎对的相关性并将遗传结构方程模型拟合到测量变量来估计遗传对WT变异性的影响。对于大多数参数而言,MZ双胞胎的配对内相关性高于DZ双胞胎。遗传因素在平均温度,介体,顶相,瑞利检验,节律百分数和最高温度的5小时等参数中,造成46%至70%的方差(广义遗传)。相关性的模式和遗传模型表明,大多数野生型参数具有中等至高的遗传力,表明相关的遗传影响。这些遗传因素的存在表明内源性是WT节律重合的主要原因。然而,某些野生生物参数仍在一定程度上依赖于环境,因此,更易于通过外部干预进行改变。

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