Calapez Francisco, Dias Rodrigo, Cesário Rute, Pedras Bruno, Canário João, Martins Zita
Centro de Química Estrutural, Institute of Molecular Sciences and Department of Chemical Engineering, Instituto Superior Técnico, Universidade de Lisboa, Lisboa, Portugal.
Institute for Bioengineering and Biosciences, Instituto Superior Técnico, Universidade de Lisboa, Lisboa, Portugal.
Astrobiology. 2025 Apr;25(4):284-295. doi: 10.1089/ast.2024.0131. Epub 2025 Mar 28.
The moons of Jupiter and Saturn, such as Europa and Enceladus, are strong candidates for the search for life outside of Earth. Together with the use of direct observational methods, physical and chemical processes that take place on icy moons may be studied on planetary field analogs, that is, on similar reachable locations on Earth. Fieldwork performed on planetary field analogs can test protocols and technology that may be applied on future space missions to extraterrestrial environments. The Arctic is a strong candidate for such studies. This study assesses a spectroscopic protocol for biosignature detection in the Arctic, as a proxy to icy moons. Samples of ice and the water underneath were collected by our team in different locations at and nearby Hudson Bay, Canada, and spectroscopic analysis detected the presence of humic acid in all the samples. On the contrary, biosignatures such as amino acids and β-carotene may have been present in concentrations below the limit of detection of the equipment used. With proper optimization, it will be possible to implement this simple protocol that relies on lightweight equipment in future space missions to icy moons.
木星和土星的卫星,如木卫二和土卫二,是寻找地球以外生命的有力候选目标。结合直接观测方法,可以在行星实地模拟环境中研究冰卫星上发生的物理和化学过程,也就是在地球上类似的可达地点进行研究。在行星实地模拟环境中开展的实地工作可以测试可能应用于未来外星环境太空任务的方案和技术。北极是这类研究的有力候选地点。本研究评估了一种用于在北极检测生物特征的光谱分析方案,作为冰卫星的替代研究对象。我们的团队在加拿大哈德逊湾及其附近的不同地点采集了冰和其下的水样,光谱分析在所有样本中均检测到了腐殖酸的存在。相反,诸如氨基酸和β - 胡萝卜素等生物特征的浓度可能低于所用设备的检测限。通过适当优化,未来前往冰卫星的太空任务将有可能实施这种依赖轻型设备的简单方案。