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生命的极限和火星的可居住性:国际空间站上的 ESA 太空实验 BIOMEX。

Limits of Life and the Habitability of Mars: The ESA Space Experiment BIOMEX on the ISS.

机构信息

1 German Aerospace Center (DLR), Institute of Planetary Research, Management and Infrastructure, Research Group Astrobiological Laboratories, Berlin, Germany.

2 GFZ, German Research Centre for Geosciences, Helmholtz Centre Potsdam, Section 5.3 Geomicrobiology, Telegrafenberg, Potsdam, Germany.

出版信息

Astrobiology. 2019 Feb;19(2):145-157. doi: 10.1089/ast.2018.1897.

Abstract

BIOMEX (BIOlogy and Mars EXperiment) is an ESA/Roscosmos space exposure experiment housed within the exposure facility EXPOSE-R2 outside the Zvezda module on the International Space Station (ISS). The design of the multiuser facility supports-among others-the BIOMEX investigations into the stability and level of degradation of space-exposed biosignatures such as pigments, secondary metabolites, and cell surfaces in contact with a terrestrial and Mars analog mineral environment. In parallel, analysis on the viability of the investigated organisms has provided relevant data for evaluation of the habitability of Mars, for the limits of life, and for the likelihood of an interplanetary transfer of life (theory of lithopanspermia). In this project, lichens, archaea, bacteria, cyanobacteria, snow/permafrost algae, meristematic black fungi, and bryophytes from alpine and polar habitats were embedded, grown, and cultured on a mixture of martian and lunar regolith analogs or other terrestrial minerals. The organisms and regolith analogs and terrestrial mineral mixtures were then exposed to space and to simulated Mars-like conditions by way of the EXPOSE-R2 facility. In this special issue, we present the first set of data obtained in reference to our investigation into the habitability of Mars and limits of life. This project was initiated and implemented by the BIOMEX group, an international and interdisciplinary consortium of 30 institutes in 12 countries on 3 continents. Preflight tests for sample selection, results from ground-based simulation experiments, and the space experiments themselves are presented and include a complete overview of the scientific processes required for this space experiment and postflight analysis. The presented BIOMEX concept could be scaled up to future exposure experiments on the Moon and will serve as a pretest in low Earth orbit.

摘要

BIOMEX(生物学和火星实验)是一个由欧洲航天局和俄罗斯航天局共同开展的太空暴露实验,位于国际空间站(ISS)Zvezda 模块外的暴露设施 EXPOSE-R2 中。该多用户设施的设计支持 BIOMEX 对太空暴露生物特征(如色素、次生代谢物和与地球和火星类似的矿物环境接触的细胞表面)的稳定性和降解水平进行研究。同时,对被研究生物的生存能力的分析为评估火星的宜居性、生命的极限以及行星际生命转移的可能性(岩石转移假说)提供了相关数据。在这个项目中,来自高山和极地栖息地的地衣、古菌、细菌、蓝藻、雪/永久冻土藻类、分生组织黑真菌和苔藓植物被嵌入、生长和培养在火星和月球风化层模拟物或其他陆地矿物的混合物上。然后,通过 EXPOSE-R2 设施,将生物和风化层模拟物以及陆地矿物混合物暴露在太空和模拟的火星环境中。在本期特刊中,我们介绍了我们对火星宜居性和生命极限的研究中获得的第一组数据。该项目由 BIOMEX 小组发起和实施,BIOMEX 小组是一个由来自三大洲 12 个国家的 30 个研究所组成的国际跨学科联盟。样本选择的飞行前测试、基于地面的模拟实验结果以及太空实验本身都被呈现出来,包括对这项太空实验所需的完整科学过程的概述以及飞行后的分析。所提出的 BIOMEX 概念可以扩展到未来在月球上的暴露实验,并将作为低地球轨道上的预测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edde/6383581/c69881282f43/fig-1.jpg

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