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Does the Precision of a Biological Clock Depend upon Its Period? Effects of the Duper and tau Mutations in Syrian Hamsters

机译:生物钟的精度是否取决于其周期?杜泊和tau突变对叙利亚仓鼠的影响

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摘要

Mutations which alter the feedback loops that generate circadian rhythms may provide insight into their insensitivity to perturbation robustness) and their consistency of period (precision). I examined relationships between endogenous period, activity and rest (τDD, α and ρ) in Syrian hamsters using two different mutations, duper and tau, both of which speed up the circadian clock. I generated 8 strains of hamsters that are homozygous or heterozygous for the tau, duper, and wild type alleles in all combinations. The endogenous period of activity onsets among these strains ranged from 17.94+0.04 to 24.13±0.04 h. Contrary to predictions, the variability of period was unrelated to its absolute value: all strains showed similar variability of τDD when activity onsets and acrophase were used as phase markers. The τDD of activity offsets was more variable than onsets but also differed little between genotypes. Cycle variation and precision were not correlated with τDD within any strain, and only weakly correlated when all strains are considered together. Only in animals homozygous for both mutations (super duper hamsters) were cycle variation and precision reduced. Rhythm amplitude differed between strains and was positively correlated with τDD and precision. All genotypes showed negative correlations between α and ρ. This confirms the expectation that deviations in the duration of subjective day and night should offset one another in order to conserve circadian period, even though homeostatic maintenance of energy reserves predicts that longer intervals of activity or rest would be followed by longer durations of rest or activity. Females consistently showed greater variability of the period of activity onset and acrophase, and of α, but variability of the period of offset differed between sexes only in super duper hamsters. Despite the differences between genotypes in τDD, ρ was consistently more strongly correlated with the preceding than the succeeding α.
机译:可以改变产生昼夜节律的反馈回路的突变,可以了解它们对扰动鲁棒性的不敏感性和周期的一致性(精度)。我使用两个不同的突变duper和tau检验了叙利亚仓鼠内源性周期,活动和休息(τDD,α和ρ)之间的关系,这两个突变都加快了昼夜节律。我生成了8种仓鼠菌株,它们对tau,duper和野生型等位基因在所有组合中都是纯合或杂合的。这些菌株中的内源性活性发作期为17.94 + 0.04至24.13±0.04h。与预测相反,周期的可变性与其绝对值无关:当将活动发作和顶峰相用作相位标记时,所有菌株都表现出相似的τDD可变性。活动偏移的τDD比起病多变,但在基因型之间也相差不大。周期变化和精度与任何菌株内的τDD均不相关,而仅当将所有菌株一起考虑时才微弱相关。仅在两个突变纯合的动物(超级双仓鼠)中,周期变异和精度降低。品系之间的节律幅度不同,并且与τDD和精度呈正相关。所有基因型在α和ρ之间显示负相关。这证实了这样的期望,即日间和主观白天的持续时间的偏差应相互抵消,以保持昼夜节律,即使体内能量储备的稳态保持预测较长的活动间隔或休息时间将跟随较长的休息时间或活动时间。雌性一直表现出活动开始,顶生相和α的更大的变异性,但是偏移的变异性仅在超级硬粒仓鼠中才有所不同。尽管τDD的基因型之间存在差异,但ρ与前一α的相关性始终强于其后继α。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Eric L. Bittman;

  • 作者单位
  • 年(卷),期 2009(7),5
  • 年度 2009
  • 页码 e36119
  • 总页数 15
  • 原文格式 PDF
  • 正文语种
  • 中图分类
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