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果蝇属中睡眠的趋异进化。

Divergent evolution of sleep in Drosophila species.

机构信息

Department of Life Sciences, Imperial College London, London, UK.

The Francis Crick Research Institute, London, UK.

出版信息

Nat Commun. 2024 Jun 14;15(1):5091. doi: 10.1038/s41467-024-49501-9.

Abstract

Living organisms synchronize their biological activities with the earth's rotation through the circadian clock, a molecular mechanism that regulates biology and behavior daily. This synchronization factually maximizes positive activities (e.g., social interactions, feeding) during safe periods, and minimizes exposure to dangers (e.g., predation, darkness) typically at night. Beyond basic circadian regulation, some behaviors like sleep have an additional layer of homeostatic control, ensuring those essential activities are fulfilled. While sleep is predominantly governed by the circadian clock, a secondary homeostatic regulator, though not well-understood, ensures adherence to necessary sleep amounts and hints at a fundamental biological function of sleep beyond simple energy conservation and safety. Here we explore sleep regulation across seven Drosophila species with diverse ecological niches, revealing that while circadian-driven sleep aspects are consistent, homeostatic regulation varies significantly. The findings suggest that in Drosophilids, sleep evolved primarily for circadian purposes. The more complex, homeostatically regulated functions of sleep appear to have evolved independently in a species-specific manner, and are not universally conserved. This laboratory model may reproduce and recapitulate primordial sleep evolution.

摘要

生物体通过生物钟将其生物活动与地球的旋转同步,生物钟是一种调节生物和行为日常节律的分子机制。这种同步实际上最大限度地提高了安全时段内的积极活动(例如社交互动、进食),并最大限度地减少了夜间通常面临的危险(例如捕食、黑暗)的暴露。除了基本的昼夜节律调节外,一些行为(如睡眠)还有额外的稳态控制层,以确保完成这些必要的活动。虽然睡眠主要由生物钟控制,但另一个二级稳态调节剂虽然尚未得到很好的理解,但它确保了必要的睡眠时间,并暗示了睡眠除了简单的能量节约和安全之外,还有基本的生物学功能。在这里,我们研究了具有不同生态位的七种果蝇物种的睡眠调节,结果表明,虽然昼夜节律驱动的睡眠方面是一致的,但稳态调节却有很大的差异。这些发现表明,在果蝇中,睡眠主要是为了昼夜节律目的而进化的。睡眠的更复杂的、受稳态调节的功能似乎以特定于物种的方式独立进化,并且不是普遍保守的。这个实验室模型可能再现和重现原始的睡眠进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a8a/11178934/b3986ce24369/41467_2024_49501_Fig1_HTML.jpg

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