Unveiling microbial diversity in deep geothermal fluids, from current knowledge and analogous environments

IF 2.9 2区 地球科学 Q3 ENERGY & FUELS Geothermal Energy Pub Date : 2023-10-20 DOI:10.1186/s40517-023-00269-z
Danaé Bregnard, Alessio Leins, Guillaume Cailleau, Andrea Vieth-Hillebrand, Florian Eichinger, Joy Ianotta, Richard Hoffmann, Joerg Uhde, Saskia Bindschedler, Simona Regenspurg, Pilar Junier
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Abstract

Extreme environments on Earth host a large diversity of microbial life. Bacteria, archaea, and fungi are able to survive under one or several extreme conditions including extreme ranges of temperature, pressure, pH or salinity. Despite extensive research on extremophilic microorganisms, a relatively unexplored frontier within the study of the deep biosphere is the survey of the diversity of microorganisms inhabiting deep geothermal reservoirs used for energy production. These sites offer unique access to investigate life in the deep biosphere. The conditions in these reservoirs are often within the range of the known limits of life, which makes them a suitable habitat for various extremophilic microorganisms. Moreover, microbial-driven processes such as microbially induced scaling or corrosion can decrease the efficacy of geothermal power plant systems. The present review summarizes the current knowledge and uncertainties surrounding microbial life in deep geothermal reservoirs. As the knowledge in deep geothermal fluids is still scarce, the microbial diversity in analogous environments, such as surface geothermal springs, deep-sea hydrothermal vents or deep subsurface environments, is also summarized here. The high diversity of microorganisms inhabiting these analogous environments suggests that deep geothermal fluids may host an unsuspected microbial diversity. Moreover, the challenges associated to the study of microorganisms in geothermal fluids are reviewed. These include notably challenges linked to sampling, DNA extraction from low biomass samples, DNA amplification and sequencing of unknown communities, and biases induced by comparison of the sequences obtained to reference databases. Such biases are even stronger concerning fungi and archaea, as specific databases are less extensive than those for bacteria. A broader knowledge on microorganisms in deep geothermal fluids may not only allow to reduce the negative impact of microbial activity in geothermal power plants, but could also provide new insights into the evolution of microorganisms and their survival in extreme environments.

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揭示深层地热流体中的微生物多样性,从目前的知识和类似的环境
地球上的极端环境孕育着多种多样的微生物生命。细菌、古细菌和真菌能够在一种或几种极端条件下生存,包括极端的温度、压力、pH值或盐度。尽管对极端微生物进行了广泛的研究,但深层生物圈研究中一个相对未开发的前沿领域是对用于能源生产的深层地热储层中微生物多样性的调查。这些地点为研究深层生物圈中的生命提供了独特的途径。这些储层的条件通常在已知的生命极限范围内,这使它们成为各种极端微生物的适宜栖息地。此外,微生物驱动的过程,如微生物引起的结垢或腐蚀会降低地热发电厂系统的效率。本文综述了深部地热储层微生物生活的现有知识和不确定性。由于对深部地热流体的认识仍然匮乏,本文还对地表地热泉、深海热液喷口或深层地下环境的微生物多样性进行了总结。居住在这些类似环境中的微生物的高度多样性表明,深层地热流体可能拥有意想不到的微生物多样性。此外,还对地热流体中微生物研究面临的挑战进行了综述。这些挑战包括采样、从低生物量样品中提取DNA、未知群落的DNA扩增和测序,以及将获得的序列与参考数据库进行比较所引起的偏差。对于真菌和古细菌,这种偏见甚至更强烈,因为特定的数据库没有细菌的数据库那么广泛。对深层地热流体中微生物的更广泛了解不仅可以减少地热发电厂中微生物活动的负面影响,而且还可以为微生物的进化及其在极端环境中的生存提供新的见解。
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来源期刊
Geothermal Energy
Geothermal Energy Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
5.90
自引率
7.10%
发文量
25
审稿时长
8 weeks
期刊介绍: Geothermal Energy is a peer-reviewed fully open access journal published under the SpringerOpen brand. It focuses on fundamental and applied research needed to deploy technologies for developing and integrating geothermal energy as one key element in the future energy portfolio. Contributions include geological, geophysical, and geochemical studies; exploration of geothermal fields; reservoir characterization and modeling; development of productivity-enhancing methods; and approaches to achieve robust and economic plant operation. Geothermal Energy serves to examine the interaction of individual system components while taking the whole process into account, from the development of the reservoir to the economic provision of geothermal energy.
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