Zorzano Maria-Paz, Martínez Germán, Polkko Jouni, Tamppari Leslie K, Newman Claire, Savijärvi Hannu, Goreva Yulia, Viúdez-Moreiras Daniel, Bertrand Tanguy, Smith Michael, Hausrath Elisabeth M, Siljeström Sandra, Benison Kathleen, Bosak Tanja, Czaja Andrew D, Debaille Vinciane, Herd Christopher D K, Mayhew Lisa, Sephton Mark A, Shuster David, Simon Justin I, Weiss Benjamin, Randazzo Nicolas, Mandon Lucia, Brown Adrian, Hecht Michael H, Martínez-Frías Jesús
Centro de Astrobiología (CAB), CSIC-INTA, 28850, Torrejón de Ardoz, Madrid, Spain.
Lunar and Planetary Institute, Universities Space Research Association, Houston, TX, USA.
Sci Rep. 2024 Mar 26;14(1):7175. doi: 10.1038/s41598-024-57458-4.
The Mars Sample Return mission intends to retrieve a sealed collection of rocks, regolith, and atmosphere sampled from Jezero Crater, Mars, by the NASA Perseverance rover mission. For all life-related research, it is necessary to evaluate water availability in the samples and on Mars. Within the first Martian year, Perseverance has acquired an estimated total mass of 355 g of rocks and regolith, and 38 μmoles of Martian atmospheric gas. Using in-situ observations acquired by the Perseverance rover, we show that the present-day environmental conditions at Jezero allow for the hydration of sulfates, chlorides, and perchlorates and the occasional formation of frost as well as a diurnal atmospheric-surface water exchange of 0.5-10 g water per m (assuming a well-mixed atmosphere). At night, when the temperature drops below 190 K, the surface water activity can exceed 0.5, the lowest limit for cell reproduction. During the day, when the temperature is above the cell replication limit of 245 K, water activity is less than 0.02. The environmental conditions at the surface of Jezero Crater, where these samples were acquired, are incompatible with the cell replication limits currently known on Earth.
火星样本返回任务旨在取回由美国国家航空航天局(NASA)的“毅力”号火星车任务从火星杰泽罗陨石坑采集的岩石、风化层和大气的密封样本。对于所有与生命相关的研究而言,评估样本以及火星上的水资源可用性很有必要。在火星的第一个年份里,“毅力”号已采集了估计总量为355克的岩石和风化层,以及38微摩尔的火星大气气体。利用“毅力”号火星车获取的现场观测数据,我们发现,杰泽罗目前的环境条件有利于硫酸盐、氯化物和高氯酸盐的水合作用,偶尔会形成霜,并且大气与地表之间存在每日0.5 - 10克水每平方米的水交换(假设大气充分混合)。夜间,当温度降至190K以下时,地表水活性可能超过0.5,这是细胞繁殖的最低限度。白天,当温度高于细胞复制极限245K时,水活性小于0.02。采集这些样本的杰泽罗陨石坑表面的环境条件与目前地球上已知的细胞复制极限不相符。