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Timing of Locomotor Activity Circadian Rhythms in Caenorhabditis elegans

机译:秀丽隐杆线虫运动活动性昼夜节律的时机

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摘要

Circadian rhythms are driven by endogenous biological clocks and are synchronized to environmental cues. The chronobiological study of Caenorhabditis elegans, an extensively used animal model for developmental and genetic research, might provide fundamental information about the basis of circadian rhythmicity in eukaryotes, due to its ease of use and manipulations, as well as availability of genetic data and mutant strains. The aim of this study is to fully characterize the circadian rhythm of locomotor activity in C. elegans, as well as a means for genetic screening in this nematode and the identification of circadian mutants. We have developed an infrared method to measure locomotor activity in C. elegans and found that, under constant conditions, although inter-individual variability is present, circadian periodicity shows a population distribution of periods centered at 23.9±0.4 h and is temperature-compensated. Locomotor activity is entrainable by light-dark cycles and by low-amplitude temperature cycles, peaking around the night-day transition and day, respectively. In addition, lin-42(mg152) or lin-42(n1089) mutants (bearing a mutation in the lin-42 gene, homolog to the per gene) exhibit a significantly longer circadian period of 25.2±0.4 h or 25.6±0.5 h, respectively. Our results represent a complete description of the locomotor activity rhythm in C. elegans, with a methodology that allowed us to uncover three of the key features of circadian systems: entrainment, free-running and temperature compensation. In addition, abnormal circadian periods in clock mutants suggest a common molecular machinery responsible for circadian rhythmicity. Our analysis of circadian rhythmicity in C. elegans opens the possibility for further screening for circadian mutations in this species.
机译:昼夜节律由内源性生物钟驱动,并与环境线索同步。秀丽隐杆线虫的时间生物学研究是一种广泛用于发育和遗传研究的动物模型,由于其易于使用和操作以及遗传数据和突变株的可用性,它可能提供有关真核生物昼夜节律基础的基本信息。 。这项研究的目的是全面表征秀丽隐杆线虫运动活动的昼夜节律,以及在该线虫中进行遗传筛选和鉴定昼夜节律突变体的手段。我们开发了一种红外方法来测量秀丽隐杆线虫的自发活动,发现在恒定条件下,尽管存在个体间的变异性,但昼夜节律的周期显示了以23.9±0.4 h为中心的周期分布,并且该周期是温度补偿的。运动活动可以通过明暗循环和低振幅温度循环进行,它们分别在昼夜转变和白天左右达到峰值。此外,lin-42(mg152)或lin-42(n1089)突变体(在lin-42基因中具有突变,与每个基因同源)表现出明显更长的昼夜周期,即25.2±0.4 h或25.6±0.5 h , 分别。我们的结果代表了秀丽隐杆线虫运动节律的完整描述,其方法学使我们能够揭示昼夜节律系统的三个关键特征:夹带,自由运行和温度补偿。此外,时钟突变体中的昼夜节律异常表明,昼夜节律性的共同分子机制。我们对秀丽隐杆线虫昼夜节律的分析为进一步筛选该物种昼夜节律突变提供了可能性。

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