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Deep subsurface organic-rich shale supports abundant, diverse, and novel fungi

July 29, 2026

As Earth’s principal reservoir of organic carbon and microbial biomass, the deep subsurface hosts microorganisms capable of mobilizing this once-sequestered carbon. Contrary to standard assumptions of eukaryotic scarcity, this study documents abundant fungal communities, ranging from 4.2 × 103 to 6.8 × 103 fungal cells mL−1, across a methane-producing organic-rich shale 247–556 meters below the surface. Although fungal:bacterial cell ratios ranged from 1:7028 to 1:713, application of biomass conversion factors developed for oceanic systems yielded a median fungal:bacterial biomass ratio of 1:4.7. 16S rRNA gene amplicons revealed bacterial and archaeal communities mirroring those found in well-characterized extremophilic, carbon-degrading environments, while sequencing of 18S rRNA gene and ITS rRNA spacer amplicons collectively identified a eukaryotic hotspot with 689 fungal OTUs across six phyla. The dominant fungal classes, Agaricomycetes and Dothideomycetes, are well-established degraders of recalcitrant carbon compounds at the surface, suggesting they may similarly contribute to organic matter degradation and ecosystem maintenance in the subsurface. Cultivation and isolation efforts yielded 205 fungal strains, including 13 candidate novel taxa, underscoring the deep subsurface as an underexplored eukaryotic habitat. Stable carbon isotopes indicate methane is predominantly generated via microbial conversion of the fossil carbon, while water isotopes suggest in situ geochemical conditions have been relatively stable since the Late Pleistocene, with subglacial recharge as a plausible mechanism for microbial introduction. Collectively, these findings suggest that fungi are underrecognized contributors to organic matter transformation and functional diversity in the deep biosphere, revealing a critical gap in our understanding of deep subsurface ecosystem processes.

Publication Year 2026
Title Deep subsurface organic-rich shale supports abundant, diverse, and novel fungi
DOI 10.1093/ismejo/wrag184
Authors Quinn S. Moon, Elliott P. Barnhart, Matthew S. Varonka, Elizabeth J. Tomaszewski, Michelle Orozco-Quime, Thomas Desrosiers, Ivan Paciorka, Michael Carley, James Schramski, Bradley S. Stevenson, Magdalena Osburn, Anurup Mohanity, Anna Martini, Jason E. Stajich, Jennifer McIntosh, Timothy Y. James
Publication Type Article
Publication Subtype Journal Article
Series Title ISME Journal
Index ID 70279212
Record Source USGS Publications Warehouse
USGS Organization WY-MT Water Science Center
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