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An Overview of Monthly Rhythms and Clocks

机译:每月节奏和时钟概述

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Organisms have evolved to cope with geophysical cycles of different period lengths. In this review, we focus on the adaptations of animals to the lunar cycle, specifically, on the occurrence of biological rhythms with monthly (circalunar) or semi-monthly (circasemilunar) period lengths. Systematic experimental investigation, starting in the early twentieth century, has allowed scientists to distinguish between mythological belief and scientific facts concerning the influence of the lunar cycle on animals. These studies revealed that marine animals of various taxa exhibit circalunar or circasemilunar reproductive rhythms. Some of these rely on endogenous oscillators (circalunar or circasemilunar clocks), whereas others are directly driven by external cues, such as the changes in nocturnal illuminance. We review current insight in the molecular and cellular mechanisms involved in circalunar rhythms, focusing on recent work in corals, annelid worms, midges, and fishes. In several of these model systems, the transcript levels of some core circadian clock genes are affected by both light and endogenous circalunar oscillations. How these and other molecular changes relate to the changes in physiology or behavior over the lunar cycle remains to be determined. We further review the possible relevance of circalunar rhythms for terrestrial species, with a particular focus on mammalian reproduction. Studies on circalunar rhythms of conception or birth rates extend to humans, where the lunar cycle was suggested to also affect sleep and mental health. While these reports remain controversial, factors like the increase in “light pollution” by artificial light might contribute to discrepancies between studies. We finally discuss the existence of circalunar oscillations in mammalian physiology. We speculate that these oscillations could be the remnant of ancient circalunar oscillators that were secondarily uncoupled from a natural entrainment mechanism, but still maintained relevance for structuring the timing of reproduction or physiology. The analysis and comparison of circalunar rhythms and clocks are currently challenging due to the heterogeneity of samples concerning species diversity, environmental conditions, and chronobiological conditions. We suggest that future research will benefit from the development of standardized experimental paradigms, and common principles for recording and reporting environmental conditions, especially light spectra and intensities.
机译:生物已经进化为应对不同时期长度的地球物理循环。在这篇综述中,我们着重于动物对月球周期的适应性,特别是针对具有每月(周长)或每半个月(周长)周期长度的生物节律的发生。始于20世纪初期的系统性实验研究,使科学家能够区分神话传说和有关月球对动物的影响的科学事实。这些研究表明,各种分类单元的海洋动物表现出周围或周围的生殖节律。其中一些依赖于内源振荡器(圆形或圆形时钟),而另一些则由外部提示直接驱动,例如夜间照度的变化。我们回顾了与昼夜节律有关的分子和细胞机制的最新见解,重点是珊瑚,in虫、,和鱼类的最新研究。在这些模型系统中的一些中,某些核心生物钟基因的转录水平受光和内源性生物钟振荡的影响。这些以及其他分子变化如何与月球周期内的生理或行为变化相关,尚待确定。我们进一步审查了昼夜节律与陆生物种的相关性,特别关注哺乳动物繁殖。关于受孕或出生率的昼夜节律的研究扩展到了人类,人类的月球周期也被认为也会影响睡眠和心理健康。尽管这些报告仍存在争议,但诸如人造光导致的“光污染”增加等因素可能会导致研究之间的差异。最后,我们讨论哺乳动物生理学中圆周振动的存在。我们推测这些振荡可能是古老的圆月形振荡器的残余,其次与自然的夹带机制脱钩,但仍与构造繁殖或生理学的时间有关。由于涉及物种多样性,环境条件和年代生物学条件的样品的异质性,目前对昼夜节律和时钟的分析和比较具有挑战性。我们建议,未来的研究将受益于标准化实验范式的发展,以及记录和报告环境条件(尤其是光谱和强度)的通用原理。

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