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Survival of halophiles of Altai lakes under extreme environmental conditions: implications for the search for Martian life

机译:在极端环境条件下,阿尔泰湖的烟道刘易生的生存:对寻找火星生活的影响

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Mars is considered to be one of the most favourable places in the Solar System to search for past and present life. In the past Mars was warmer and wetter, so terrestrial halophiles can be regarded as analogues of hypothetical ancient Martian halophiles. In this study we used microorganisms from unique Altai region (Russia) to estimate the capability of terrestrial bacteria and archaea to survive at low temperatures and high concentration of salts and metals, similar to the Martian environment. The current report demonstrates that both halophilic archaea and halotolerant bacteria from saline lakes of the Altai region may be considered as analogues of ancient Martian organisms, since they are able to withstand conditions that hypothetically existed in subsurface layers of the early Mars (low temperatures, salt solutions with a high content of NaCl) with only slight decrease in viability. We also found that the studied microorganisms can use some organic substances found in meteorites. We consider that transfer of unicellular halophiles from Earth to Mars was possible, and, moreover, they could successfully survive and grow on early Mars. Adjusting our growth media to the chemical composition of the lakes, from which the studied strains were isolated, resulted in significant increase in survival and growth rates. Certain strains could survive several freeze-thaw cycles at -70 degrees C typical for Martian nights.
机译:火星被认为是太阳系中最有利的地方之一,以寻找过去和现在的生活。在过去的火星中,温暖和潮湿,所以陆地嗜戟可以被视为假设的古老火星诺维尔的类似物。在这项研究中,我们使用来自独特的阿尔泰地区(俄罗斯)的微生物来估计陆地细菌和古痤疮的能力,在低温和高浓度的盐和金属中存活,类似于火星环境。目前的报告表明,阿尔泰地区盐水湖泊和来自盐水湖泊的嗜盐古藻和黑烟细菌可能被视为古代火星生物体的类似物,因为它们能够承受在早期火星的地下层(低温,盐的地下层中假设存在的条件具有高含量的NaCl的溶液)仅略有降低的活力。我们还发现研究的微生物可以使用陨石中发现的一些有机物质。我们认为从地球到火星的单细胞嗜戟属性的转移是可能的,而且,他们可以在早期的火星上成功地生存并增长。将生长介质调整为湖泊的化学成分,从中分离出研究的菌株,导致存活率和生长速率显着增加。某些菌株可以在典型的Martian夜晚典型的几个冻融周期存活。

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