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微生物的亚冰点活性与火星极地地区的潜在宜居性。

Subfreezing activity of microorganisms and the potential habitability of Mars' polar regions.

作者信息

Jakosky Bruce M, Nealson Kenneth H, Bakermans Corien, Ley Ruth E, Mellon Michael T

机构信息

Laboratory for Atmospheric and Space Physics, Department of Geological Sciences, University of Colorado, Boulder, CO 80303, USA.

出版信息

Astrobiology. 2003 Summer;3(2):343-50. doi: 10.1089/153110703769016433.

Abstract

The availability of water-ice at the surface in the Mars polar cap and within the top meter of the high-latitude regolith raises the question of whether liquid water can exist there under some circumstances and possibly support the existence of biota. We examine the minimum temperatures at which liquid water can exist at ice grain-dust grain and ice grain-ice grain contacts, the minimum subfreezing temperatures at which terrestrial organisms can grow or multiply, and the maximum temperatures that can occur in martian high-latitude and polar regions, to see if there is overlap. Liquid water can exist at grain contacts above about -20 degrees C. Measurements of growth in organisms isolated from Siberian permafrost indicate growth at -10 degrees C and metabolism at -20 degrees C. Mars polar and high-latitude temperatures rise above -20 degrees C at obliquities greater than ~40 degrees, and under some conditions rise above 0 degrees C. Thus, the environment in the Mars polar regions has overlapped habitable conditions within relatively recent epochs, and Mars appears to be on the edge of being habitable at present. The easy accessibility of the polar surface layer relative to the deep subsurface make these viable locations to search for evidence of life.

摘要

火星极冠表面以及高纬度风化层顶部一米范围内存在水冰,这引发了一个问题:在某些情况下,液态水是否能在那里存在,并有可能支持生物群的生存。我们研究了在冰粒与尘粒以及冰粒与冰粒接触处液态水能够存在的最低温度、陆地生物能够生长或繁殖的最低亚冰点温度,以及火星高纬度和极地地区可能出现的最高温度,以查看是否存在重叠情况。在高于约零下20摄氏度时,液态水能够在颗粒接触处存在。对从西伯利亚永久冻土中分离出的生物的生长测量表明,它们在零下10摄氏度时能够生长,在零下20摄氏度时能够进行新陈代谢。当火星的倾角大于约40度时,其极地和高纬度温度会升至高于零下20摄氏度,并且在某些条件下会升至高于0摄氏度。因此,在相对较近的时期内,火星极地地区的环境与宜居条件存在重叠,而且目前火星似乎处于宜居的边缘。相对于深层地下区域,极地表层更容易到达,这使得这些地方成为寻找生命证据的可行地点。

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