地下深部で岩石を利用して生息する菌類を発見(Rock-eating Fungi Flourish Deep Below Our Feet)

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2026-07-29 ミシガン大学

ミシガン大学を中心とする国際研究チームは、地下深部の岩石中に生息する「岩石を食べる菌類(岩石栄養性菌類)」の生態を調査し、これらの菌類が地下深部環境で予想以上に繁栄していることを明らかにした。研究では、地下深部から採取した岩石試料を解析した結果、菌類は岩石中の鉄やマンガンなどの無機鉱物や微量の有機物を利用して生存し、鉱物の風化や元素循環に重要な役割を果たしていることが示された。また、極めて栄養に乏しい環境でも独自の代謝機構によって長期間生存できることが判明し、地下深部生態系が従来考えられていた以上に活発で多様であることが示唆された。これらの菌類は地球規模の炭素・金属循環への寄与に加え、地下生命圏の進化や、火星など地下に生命が存在する可能性を探るアストロバイオロジー研究にも重要な知見を提供する。本研究は、地下生物圏の理解を深めるとともに、地球外生命探査や極限環境微生物学の発展につながる成果である。

地下深部で岩石を利用して生息する菌類を発見(Rock-eating Fungi Flourish Deep Below Our Feet)
A study led by University of Michigan researchers found that organic-rich rocks and water deep below ground teem with life: they are packed with fungi and other tiny organisms. Image credit: John Megahan, University of Michigan

<関連情報>

地下深部の有機物に富んだ頁岩は、豊富で多様な、そして新しい菌類を育んでいる Deep subsurface organic-rich shale supports abundant, diverse, and novel fungi

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,…
The ISME Journal  Published: 29 July 2026
DOI:https://doi.org/10.1093/ismejo/wrag184

Abstract

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.

生物環境工学
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