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熔岩管冰洞穴低温微生物群落的分类特征及微生物活性测定——高保真度火星模拟环境下的研究

Taxonomic Characterization and Microbial Activity Determination of Cold-Adapted Microbial Communities in Lava Tube Ice Caves from Lava Beds National Monument, a High-Fidelity Mars Analogue Environment.

机构信息

Department of Natural Resource Sciences, McGill Space Institute, McGill University, Sainte-Anne-de-Bellevue, Quebec, Canada.

Department of Earth and Planetary Sciences, McGill Space Institute, McGill University, Sainte-Anne-de-Bellevue, Quebec, Canada.

出版信息

Astrobiology. 2021 May;21(5):613-627. doi: 10.1089/ast.2020.2327. Epub 2021 Apr 1.

Abstract

Martian lava tube caves resulting from a time when the planet was still volcanically active are proposed to contain deposits of water ice, a feature that may increase microbial habitability. In this study, we taxonomically characterized and directly measured metabolic activity of the microbial communities that inhabit lava tube ice from Lava Beds National Monument, an analogue environment to martian lava tubes. We investigated whether this environment was habitable to microorganisms by determining their taxonomic diversity, metabolic activity, and viability using both culture-dependent and culture-independent techniques. With 16S rRNA gene sequencing, we recovered 27 distinct phyla from both ice and ice-rock interface samples, primarily consisting of Actinobacteria, Proteobacteria, Bacteroidetes, Firmicutes, and Chloroflexi. Radiorespiration and Biolog EcoPlate assays found these microbial communities to be metabolically active at both 5°C and -5°C and able to metabolize diverse sets of heterotrophic carbon substrates at each temperature. Viable cells were predominantly cold adapted and capable of growth at 5°C (1.3 × 10 to 2.9 × 10 cells/mL), and 24 of 38 cultured isolates were capable of growth at -5°C. Furthermore, 14 of these cultured isolates, and 16 of the 20 most numerous amplicon sequences we recovered were most closely related to isolates and sequences obtained from other cryophilic environments. Given these results, lava tube ice appears to be a habitable environment, and considering the protections martian lava tubes offer to microbial communities from harsh surface conditions, similar martian caves containing ice may be capable of supporting extant, active microbial communities.

摘要

火星熔岩管洞穴是由行星仍处于火山活跃期形成的,据推测其中含有水冰沉积物,这一特征可能增加微生物的栖息地适宜性。在这项研究中,我们对来自拉瓦布雷国家纪念碑的熔岩管冰中的微生物群落进行了分类学特征描述,并直接测量了它们的代谢活性,拉瓦布雷国家纪念碑是火星熔岩管的模拟环境。我们通过使用依赖培养和非依赖培养的技术来确定微生物的分类多样性、代谢活性和生存能力,从而确定这个环境是否适宜微生物居住。通过 16S rRNA 基因测序,我们从冰和冰岩界面样本中恢复了 27 个不同的门,主要由放线菌门、变形菌门、拟杆菌门、厚壁菌门和绿弯菌门组成。放射性呼吸和 Biolog EcoPlate 测定发现,这些微生物群落在 5°C 和-5°C 下均具有代谢活性,并且能够在每个温度下代谢多种异养碳底物。存活细胞主要是冷适应的,能够在 5°C(1.3×10 到 2.9×10 个细胞/ml)下生长,在-5°C 下生长的培养分离物有 24 个。此外,在 38 个培养分离物中,有 14 个分离物和我们恢复的 20 个最多的扩增子序列中的 16 个与从其他嗜冷环境中获得的分离物和序列最密切相关。鉴于这些结果,熔岩管冰似乎是一个适宜居住的环境,并且考虑到火星熔岩管为微生物群落提供了免受恶劣表面条件影响的保护,类似含有冰的火星洞穴可能能够支持现存的、活跃的微生物群落。

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