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Homeostasis in C. elegans sleep is characterized by two behaviorally and genetically distinct mechanisms

机译:秀丽隐杆线虫睡眠中的体内稳态具有两种行为和遗传上不同的机制

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摘要

Biological homeostasis invokes modulatory responses aimed at stabilizing internal conditions. Using tunable photo- and mechano-stimulation, we identified two distinct categories of homeostatic responses during the sleep-like state of Caenorhabditis elegans (lethargus). In the presence of weak or no stimuli, extended motion caused a subsequent extension of quiescence. The neuropeptide Y receptor homolog, NPR-1, and an inhibitory neuropeptide known to activate it, FLP-18, were required for this process. In the presence of strong stimuli, the correlations between motion and quiescence were disrupted for several minutes but homeostasis manifested as an overall elevation of the time spent in quiescence. This response to strong stimuli required the function of the DAF-16/FOXO transcription factor in neurons, but not that of NPR-1. Conversely, response to weak stimuli did not require the function of DAF-16/FOXO. These findings suggest that routine homeostatic stabilization of sleep may be distinct from homeostatic compensation following a strong disturbance.>DOI:
机译:生物稳态引起旨在稳定内部条件的调节反应。使用可调的光刺激和机械刺激,我们在秀丽隐杆线虫(如食虫)的睡眠状态下确定了两种不同的稳态反应。在无刺激或无刺激的情况下,伸展运动导致随后的静止延长。该过程需要神经肽Y受体同源物NPR-1和已知激活它的抑制性神经肽FLP-18。在强烈刺激下,运动与静止之间的相关性会中断几分钟,但动态平衡表现为静止所花费时间的总体增加。对强刺激的这种反应需要神经元中DAF-16 / FOXO转录因子的功能,但不需要NPR-1。相反,对弱刺激的反应不需要DAF-16 / FOXO的功能。这些发现表明,在强烈干扰下,常规的稳态睡眠平衡可能不同于稳态补偿。> DOI:

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