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Clumped isotopes of methane trace bioenergetics in the environment

  • Jiarui Liu
  • , Edward D. Young
  • , André Pellerin
  • , Jeanine L. Ash
  • , Gerard T. Barrett
  • , Xiahong Feng
  • , Peter R. Girguis
  • , Sebastian J.E. Krause
  • , William D. Leavitt
  • , Kyla Murphy
  • , Qianhui Qin
  • , Andreas Teske
  • , David L. Valentine
  • , Katey Walter Anthony
  • , Tina Treude

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

Methane is a major greenhouse gas and a key component of global biogeochemical cycles. Microbial methane often deviates from isotope and isotopolog equilibrium in surface environments but approaches equilibrium in deep subsurface sediments. The origin of this near-equilibrium isotopic signature in methane, whether directly produced by methanogens or achieved through anaerobic oxidation of methane (AOM), remains uncertain. Here, we show that, in the absence of AOM, microbial methane produced from deep-sea sediments exhibits isotopolog compositions approaching thermodynamic equilibrium due to energy limitation. In contrast, microbial methane from salt marsh and thermokarst lakes exhibits significant hydrogen and clumped isotopic disequilibrium due to high free-energy availability. We propose that clumped isotopologs of methane provide a proxy for characterizing the bioenergetics of environments for methane production. Together, these observations demonstrate methane clumped isotopes as a powerful tool to better understand the relation between methane metabolisms and the energy landscape in natural environments.

Original languageEnglish
Article numbereadu1401
JournalScience Advances
Volume11
Issue number26
DOIs
StatePublished - 27 Jun 2025
Externally publishedYes

ASJC Scopus subject areas

  • General

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