Circadian rhythms: pervasive, and often times evasive.

Luis F Larrondo
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Abstract

Most circadian texts begin by stating that clocks are pervasive throughout the tree of life. Indeed, clock mechanisms have been described from cyanobacteria to humans, representing a notable example of convergent evolution: yet, there are several phyla in animals, protists or within fungi and bacteria, in which homologs of some-or all-known clock components seem to be absent, posing inevitable questions about the evolution of circadian systems. Moreover, as we move away from model organisms, there are several taxa in which core clock elements can be identified at the genomic levels. However, the functional description of those putative clocks has been hard to achieve, as rhythmicity is not observed unless defined abiotic or nutritional cues are provided. The mechanisms 'conditioning' the functionality of clocks remain uncertain, emphasizing the need to delve further into non-model circadian systems. As the absence of evidence is not evidence of absence, the lack of known core-clock homologs or of observable rhythms in a given organism, cannot be an a priori criterion to discard the presence of a functional clock, as rhythmicity may be limited to yet untested experimental conditions or phenotypes. This article seeks to reflect on these topics, highlighting some of the pressing questions awaiting to be addressed.This article is part of the Theo Murphy meeting issue 'Circadian rhythms in infection and immunity'.

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昼夜节律:无处不在,而且常常是逃避。
大多数关于昼夜节律的文章都是这样开头的:时钟在生命之树中无处不在。事实上,从蓝藻到人类,时钟机制已经被描述,代表了趋同进化的一个显著例子:然而,在动物,原生生物或真菌和细菌中有几个门,其中一些或全部已知的时钟组件的同源物似乎缺失,这对昼夜节律系统的进化提出了不可避免的问题。此外,当我们远离模式生物时,有几个分类群的核心时钟元件可以在基因组水平上被识别出来。然而,这些假定的时钟的功能描述很难实现,因为除非提供明确的非生物或营养线索,否则无法观察到节律性。调节时钟功能的机制仍然不确定,强调需要进一步深入研究非模型昼夜节律系统。由于缺乏证据并不是缺乏证据,因此在给定生物体中缺乏已知的核心时钟同源物或可观察到的节律,不能作为先验的标准来抛弃功能时钟的存在,因为节律性可能仅限于尚未测试的实验条件或表型。本文试图反思这些主题,突出一些亟待解决的紧迫问题。这篇文章是西奥·墨菲会议议题“感染和免疫的昼夜节律”的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
11.80
自引率
1.60%
发文量
365
审稿时长
3 months
期刊介绍: The journal publishes topics across the life sciences. As long as the core subject lies within the biological sciences, some issues may also include content crossing into other areas such as the physical sciences, social sciences, biophysics, policy, economics etc. Issues generally sit within four broad areas (although many issues sit across these areas): Organismal, environmental and evolutionary biology Neuroscience and cognition Cellular, molecular and developmental biology Health and disease.
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