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横跨陆地深部地下生物圈的有机硫与无机硫耦合循环的潜力。

The potential for coupled organic and inorganic sulfur cycles across the terrestrial deep subsurface biosphere.

作者信息

Patsis Amanda C, Schuler Christopher J, Toner Brandy M, Santelli Cara M, Sheik Cody S

机构信息

Department of Earth and Environmental Sciences, University of Minnesota - Twin Cities, Minneapolis, MN, USA.

BioTechnology Institute, University of Minnesota - Twin Cities, St. Paul, MN, USA.

出版信息

Nat Commun. 2025 Apr 23;16(1):3827. doi: 10.1038/s41467-025-59241-z.

Abstract

Organosulfur compounds (OrgS) are fundamental components of life's biomass, yet the cycling of these compounds in the terrestrial deep subsurface, one of Earth's largest ecosystems, has gone relatively unexplored. Here, we show that all subsurface microbial genomes reconstructed from Soudan Underground Mine State Park have the capacity to cycle organic sulfur species. Our findings suggest that OrgS degradation may be an integral link between the organic and inorganic sulfur cycle via the production of sulfite and sulfide. Furthermore, despite isolation from surface ecosystems, most Soudan microorganisms retained genes for dimethylsulfoniopropionate and taurine biosynthesis. Metagenomic analyses of an additional 54 deep subsurface sites spanning diverse lithologies revealed the capacity for OrgS cycling to be widespread, occurring in 89% of assembled metagenomes. Our results indicate that consideration of OrgS cycling may be necessary to accurately constrain sulfur fluxes, discern the energetic limits of deep life, and determine the impact of deep subsurface biogeochemical sulfur cycling on greater Earth system processes.

摘要

有机硫化合物(OrgS)是生命生物质的基本组成部分,然而,这些化合物在陆地深层地下(地球上最大的生态系统之一)的循环却相对未被探索。在这里,我们表明,从苏丹地下矿山州立公园重建的所有地下微生物基因组都具有循环有机硫物种的能力。我们的研究结果表明,OrgS降解可能是通过亚硫酸盐和硫化物的产生在有机和无机硫循环之间的一个不可或缺的环节。此外,尽管与地表生态系统隔离,但大多数苏丹微生物保留了二甲基磺基丙酸酯和牛磺酸生物合成的基因。对另外54个跨越不同岩性的深层地下位点的宏基因组分析表明,OrgS循环的能力很普遍,在89%的组装宏基因组中都有出现。我们的结果表明,考虑OrgS循环可能对于准确限制硫通量、识别深层生命的能量极限以及确定深层地下生物地球化学硫循环对更大的地球系统过程的影响是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5825/12019592/cf4c2d3f122a/41467_2025_59241_Fig1_HTML.jpg

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