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黑暗生物圈中的生命:“无节律”环境下的昼夜节律生理学综述

Life in a dark biosphere: a review of circadian physiology in "arrhythmic" environments.

作者信息

Beale Andrew David, Whitmore David, Moran Damian

机构信息

Department of Cell and Developmental Biology, Centre for Cell and Molecular Dynamics, University College London, 21 University Street, London, WC1E 6BT, UK.

Plant and Food Research, Seafood Technologies Group, Nelson, New Zealand.

出版信息

J Comp Physiol B. 2016 Dec;186(8):947-968. doi: 10.1007/s00360-016-1000-6. Epub 2016 Jun 4.

Abstract

Most of the life with which humans interact is exposed to highly rhythmic and extremely predictable changes in illumination that occur with the daily events of sunrise and sunset. However, while the influence of the sun feels omnipotent to surface dwellers such as ourselves, life on earth is dominated, in terms of biomass, by organisms isolated from the direct effects of the sun. A limited understanding of what life is like away from the sun can be inferred from our knowledge of physiology and ecology in the light biosphere, but a full understanding can only be gained by studying animals from the dark biosphere, both in the laboratory and in their natural habitats. One of the least understood aspects of life in the dark biosphere is the rhythmicity of physiology and what it means to live in an environment of low or no rhythmicity. Here we describe methods that may be used to understand rhythmic physiology in the dark and summarise some of the studies of rhythmic physiology in "arrhythmic" environments, such as the poles, deep sea and caves. We review what can be understood about the adaptive value of rhythmic physiology on the Earth's surface from studies of animals from arrhythmic environments and what role a circadian clock may play in the dark.

摘要

人类与之互动的大多数生命都暴露于光照的高度节律性和极其可预测的变化之中,这些变化随着日出和日落的日常事件而发生。然而,虽然太阳的影响对像我们这样的地表生物来说似乎无所不能,但就生物量而言,地球上的生命主要由那些与太阳的直接影响隔绝的生物所主导。从我们对光合生物圈内生理学和生态学的了解中,可以推断出对远离太阳的生命状况的有限认识,但只有通过在实验室和自然栖息地研究来自黑暗生物圈的动物,才能获得全面的认识。黑暗生物圈内生命最不为人所理解的方面之一是生理学的节律性以及在低节律或无节律环境中生存意味着什么。在这里,我们描述了可用于理解黑暗中节律性生理学的方法,并总结了一些在“无节律”环境(如极地、深海和洞穴)中对节律性生理学的研究。我们回顾了从对无节律环境中的动物研究中可以了解到的关于地球表面节律性生理学的适应性价值,以及生物钟在黑暗中可能发挥的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4284/5090016/3d7aad29e53e/360_2016_1000_Fig1_HTML.jpg

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