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电离辐射与生命。

Ionizing radiation and life.

机构信息

UCL Institute for Origins, University College London, London, UK.

出版信息

Astrobiology. 2011 Jul-Aug;11(6):551-82. doi: 10.1089/ast.2010.0528. Epub 2011 Jul 20.

Abstract

Ionizing radiation is a ubiquitous feature of the Cosmos, from exogenous cosmic rays (CR) to the intrinsic mineral radioactivity of a habitable world, and its influences on the emergence and persistence of life are wide-ranging and profound. Much attention has already been focused on the deleterious effects of ionizing radiation on organisms and the complex molecules of life, but ionizing radiation also performs many crucial functions in the generation of habitable planetary environments and the origins of life. This review surveys the role of CR and mineral radioactivity in star formation, generation of biogenic elements, and the synthesis of organic molecules and driving of prebiotic chemistry. Another major theme is the multiple layers of shielding of planetary surfaces from the flux of cosmic radiation and the various effects on a biosphere of violent but rare astrophysical events such as supernovae and gamma-ray bursts. The influences of CR can also be duplicitous, such as limiting the survival of surface life on Mars while potentially supporting a subsurface biosphere in the ocean of Europa. This review highlights the common thread that ionizing radiation forms between the disparate component disciplines of astrobiology.

摘要

电离辐射是宇宙中无处不在的特征,从外生宇宙射线 (CR) 到宜居世界的固有矿物质放射性,其对生命的出现和持续的影响是广泛而深远的。人们已经关注了电离辐射对生物体和生命复杂分子的有害影响,但电离辐射在可居住行星环境的产生和生命起源中也发挥着许多关键作用。这篇综述调查了 CR 和矿物质放射性在恒星形成、生物元素的产生、有机分子的合成以及前生物化学的驱动中的作用。另一个主要主题是行星表面对宇宙辐射通量的多层屏蔽,以及超新星和伽马射线暴等剧烈但罕见的天文事件对生物圈的各种影响。CR 的影响也可能是双重的,例如限制了火星表面生命的生存,而可能支持木卫二海洋中的地下生物圈。这篇综述强调了电离辐射在天体生物学不同组成学科之间形成的共同线索。

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