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地磁场如何影响地球上的生命——地磁生物学的综合方法。

How the Geomagnetic Field Influences Life on Earth - An Integrated Approach to Geomagnetobiology.

机构信息

Department of Animal Taxonomy and Ecology, Faculty of Biology, Adam Mickiewicz University in Poznań, Uniwersytetu Poznańskiego 6, 61-614, Poznań, Poland.

Department of Bioenergetics, Faculty of Biology, Adam Mickiewicz University in Poznań, Uniwersytetu Poznańskiego 6, 61-614, Poznań, Poland.

出版信息

Orig Life Evol Biosph. 2021 Sep;51(3):231-257. doi: 10.1007/s11084-021-09612-5. Epub 2021 Aug 7.

DOI:10.1007/s11084-021-09612-5
PMID:34363564
Abstract

Earth is one of the inner planets of the Solar System, but - unlike the others - it has an oxidising atmosphere, relatively stable temperature, and a constant geomagnetic field (GMF). The GMF does not only protect life on Earth against the solar wind and cosmic rays, but it also shields the atmosphere itself, thus creating relatively stable environmental conditions. What is more, the GMF could have influenced the origins of life: organisms from archaea to plants and animals may have been using the GMF as a source of spatial information since the very beginning. Although the GMF is constant, it does undergo various changes, some of which, e.g. a reversal of the poles, weaken the field significantly or even lead to its short-term disappearance. This may result in considerable climatic changes and an increased frequency of mutations caused by the solar wind and cosmic radiation. This review analyses data on the influence of the GMF on different aspects of life and it also presents current knowledge in the area. In conclusion, the GMF has a positive impact on living organisms, whereas a diminishing or disappearing GMF negatively affects living organisms. The influence of the GMF may also be an important factor determining both survival of terrestrial organisms outside Earth and the emergence of life on other planets.

摘要

地球是太阳系的内行星之一,但与其他行星不同的是,它具有氧化大气、相对稳定的温度和稳定的地磁场(GMF)。GMF 不仅保护地球上的生命免受太阳风和宇宙射线的伤害,而且还保护大气层本身,从而创造了相对稳定的环境条件。更重要的是,GMF 可能影响了生命的起源:从古菌到植物和动物的生物体可能从一开始就将 GMF 用作空间信息的来源。尽管 GMF 是恒定的,但它确实会发生各种变化,其中一些变化,例如磁极反转,会显著削弱磁场,甚至导致其短期消失。这可能导致气候发生重大变化,太阳风和宇宙辐射引起的突变频率增加。本综述分析了 GMF 对生命各个方面的影响的数据,并介绍了该领域的最新知识。总之,GMF 对生物体有积极的影响,而减弱或消失的 GMF 则对生物体产生负面影响。GMF 的影响也可能是决定地球外陆地生物的生存和其他行星上生命出现的重要因素之一。

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2
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6
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