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首页> 外文期刊>Frontiers in Microbiology >Exploring Fingerprints of the Extreme Thermoacidophile Metallosphaera sedula Grown on Synthetic Martian Regolith Materials as the Sole Energy Sources
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Exploring Fingerprints of the Extreme Thermoacidophile Metallosphaera sedula Grown on Synthetic Martian Regolith Materials as the Sole Energy Sources

机译:探索以合成火星雷古石材料为唯一能源的嗜热嗜酸菌 Metallosphaera sedula 的指纹

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摘要

The biology of metal transforming microorganisms is of a fundamental and applied importance for our understanding of past and present biogeochemical processes on Earth and in the Universe. The extreme thermoacidophile Metallosphaera sedula is a metal mobilizing archaeon, which thrives in hot acid environments (optimal growth at 74°C and pH 2.0) and utilizes energy from the oxidation of reduced metal inorganic sources. These characteristics of M. sedula make it an ideal organism to further our knowledge of the biogeochemical processes of possible life on extraterrestrial planetary bodies. Exploring the viability and metal extraction capacity of M. sedula living on and interacting with synthetic extraterrestrial minerals, we show that M. sedula utilizes metals trapped in the Martian regolith simulants (JSC Mars 1A; P-MRS; S-MRS; MRS07/52) as the sole energy sources. The obtained set of microbiological and mineralogical data suggests that M. sedula actively colonizes synthetic Martian regolith materials and releases free soluble metals. The surface of bioprocessed Martian regolith simulants is analyzed for specific mineralogical fingerprints left upon M. sedula growth. The obtained results provide insights of biomining of extraterrestrial material as well as of the detection of biosignatures implementing in life search missions.
机译:金属转化微生物的生物学对于我们对地球和宇宙过去和现在的生物地球化学过程的理解具有根本和应用的重要性。嗜热嗜酸菌极度嗜热菌是一种金属动员古细菌,它可以在热酸环境(在74°C和pH 2.0的条件下最佳生长)中生长,并利用还原的金属无机源氧化产生的能量。景天分枝杆菌的这些特征使其成为理想的生物,可以进一步了解地球外行星上可能存在的生命的生物地球化学过程。探索生活在人工合成的地球外矿物上并与之相互作用的小枝M的生存能力和金属提取能力,我们发现小枝利用了火星重石模拟物中的金属(JSC Mars 1A; P-MRS; S-MRS; MRS07 / 52 )作为唯一的能源。所获得的一组微生物学和矿物学数据表明,景天分枝杆菌活跃地定居在合成的火星长石材料中并释放出游离的可溶性金属。对经过生物处理的火星雷古石模拟物的表面进行分析,以了解景天小growth生长后留下的特定矿物学指纹。获得的结果提供了对地球外物质生物开采以及在生命搜索任务中实施生物特征检测的见解。

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