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日本十日町泥火山中的烃类循环:来自同位素异构体和宏分类学分析的见解

Hydrocarbon Cycling in the Tokamachi Mud Volcano (Japan): Insights from Isotopologue and Metataxonomic Analyses.

作者信息

Gilbert Alexis, Nakagawa Mayuko, Taguchi Koudai, Zhang Naizhong, Nishida Akifumi, Yoshida Naohiro

机构信息

Department of Earth and Planetary Sciences, Tokyo Institute of Technology, Tokyo 152-8550, Japan.

Earth-Life Science Institute, Tokyo Institute of Technology, Tokyo 152-8550, Japan.

出版信息

Microorganisms. 2022 Jul 14;10(7):1417. doi: 10.3390/microorganisms10071417.

Abstract

Understanding hydrocarbon cycling in the subsurface is important in various disciplines including climate science, energy resources and astrobiology. Mud volcanoes provide insights into biogeochemical processes occurring in the subsurface. They are usually associated with natural gas reservoirs consisting mainly of methane and other hydrocarbons as well as CO. Stable isotopes have been used to decipher the sources and sinks of hydrocarbons in the subsurface, although the interpretation can be ambiguous due to the numerous processes involved. Here we report new data for hydrocarbon isotope analysis, including position-specific isotope composition of propane, for samples from the Tokamachi mud volcano area, Japan. The data suggest that C hydrocarbons are being biodegraded, with indirect production of methane ("secondary methanogenesis"). Data from chemical and isotopic composition are discussed with regard to 16S rRNA analysis, which exhibits the presence of hydrogenotrophic and acetoclastic methoanogens. Overall, the combination of isotopologue analysis with 16S rRNA gene data allows refining of our understanding of hydrocarbon cycling in subsurface environments.

摘要

了解地下碳氢化合物的循环在包括气候科学、能源资源和天体生物学在内的各个学科中都很重要。泥火山为了解地下发生的生物地球化学过程提供了线索。它们通常与主要由甲烷和其他碳氢化合物以及一氧化碳组成的天然气藏有关。稳定同位素已被用于解读地下碳氢化合物的来源和汇,尽管由于涉及众多过程,其解释可能存在模糊性。在此,我们报告了来自日本十日町泥火山区样品的碳氢化合物同位素分析新数据,包括丙烷的位置特异性同位素组成。数据表明,碳氢化合物正在被生物降解,并间接产生甲烷(“次生甲烷生成”)。结合16S rRNA分析讨论了化学和同位素组成的数据,该分析显示存在氢营养型和乙酸裂解型产甲烷菌。总体而言,同位素异构体分析与16S rRNA基因数据的结合有助于深化我们对地下环境中碳氢化合物循环的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/137f/9323770/1f2da6409c9f/microorganisms-10-01417-g001.jpg

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