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Zeitgebers (time cues) for biological clocks

机译:生物钟的Zeitgebers(时间提示)

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The spatial and temporal aspects of the geophysical environment act as prominent selection forces for the evolution of life on this planet. The spatial features of the environment open up a choice of spatial niches and the temporal aspects on the other hand provide opportunities for adopting different temporal niches. Hence, both the spatial and the temporal properties of the environment together enhance the possibility for living organisms to exploit a given ecological niche at a given time of the day. The temporal selection pressures of the geophysical environment are composed of a number of abiotic factors such as light/dark cycles, temperature cycles, humidity cycles, and a range of biotic factors such as inter-individual interactions, interactions with preys, predators and parasites. Although the study of temporal organization in living organisms is relatively a recent phenomenon in biology, we now have access to a fair amount of knowledge about it in a number organisms ranging from cyanobacteria to humans. In this review, we shall focus mainly on three core questions related to timekeeping in living organisms: How are circadian clocks made to oscillate at desired frequencies?; What are the geophysical cycles that fine-tune circadian clocks?; Why are circadian clocks circadian?
机译:地球物理环境的时空方面是地球上生命进化的重要选择力。环境的空间特征为空间生态位提供了选择,另一方面,时间方面为采用不同的时间生态位提供了机会。因此,环境的空间和时间特性共同提高了生物体在一天中的特定时间利用特定生态位的可能性。地球物理环境的时间选择压力包括许多非生物因素,例如明/暗循环,温度循环,湿度循环,以及一系列生物因素,例如个体之间的相互作用,与猎物,掠食者和寄生虫的相互作用。尽管对生物体时间组织的研究是生物学中相对较新的现象,但是我们现在已经获得了从蓝细菌到人类等许多生物体中有关它的大量知识。在这篇综述中,我们将主要关注与生物体计时有关的三个核心问题:生物钟如何以所需的频率振荡?微调生物钟的地球物理周期是什么?为什么生物钟是生物钟?

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