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Multiplication of microbes below 0.690 water activity: implications for terrestrial and extraterrestrial life

机译:水活度低于0.690的微生物繁殖:对陆地和陆地外生命的影响

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摘要

Since a key requirement of known life forms is available water (water activity; a(w)), recent searches for signatures of past life in terrestrial and extraterrestrial environments have targeted places known to have contained significant quantities of biologically available water. However, early life on Earth inhabited high-salt environments, suggesting an ability to withstand low water-activity. The lower limit of water activity that enables cell division appears to be approximate to 0.605 which, until now, was only known to be exhibited by a single eukaryote, the sugar-tolerant, fungal xerophile Xeromyces bisporus. The first forms of life on Earth were, though, prokaryotic. Recent evidence now indicates that some halophilic Archaea and Bacteria have water-activity limits more or less equal to those of X.bisporus. We discuss water activity in relation to the limits of Earth's present-day biosphere; the possibility of microbial multiplication by utilizing water from thin, aqueous films or non-liquid sources; whether prokaryotes were the first organisms able to multiply close to the 0.605-a(w) limit; and whether extraterrestrial aqueous milieux of 0.605a(w) can resemble fertile microbial habitats found on Earth.
机译:由于已知生命形式的关键要求是可利用的水(水活度; a(w)),因此,最近在陆地和地球外环境中寻找过去生活特征的搜索已将目标锁定在已知含有大量生物可利用水的地方。但是,地球上的早期生命居住在高盐环境中,这表明它具有承受低水分活度的能力。能够使细胞分裂的水分活度的下限似乎约为0.605,直到目前,仅已知是由单一的真核生物(耐糖的,真菌的嗜干菌双孢菌)表现出的。但是,地球上最初的生命形式是原核生物。现在的最新证据表明,某些嗜盐古生菌和细菌的水活度限值与双孢杆菌相当。我们讨论与地球当今生物圈范围有关的水活度;利用薄水膜或非液体来源的水进行微生物繁殖的可能性;原核生物是否是第一个能够繁殖接近0.605-a(w)极限的生物;以及0.605a(w)的地外水环境能否类似于地球上发现的肥沃的微生物栖息地。

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