产甲烷
甲烷
古细菌
缺氧水域
生物地球化学循环
海草
环境化学
环境科学
温室气体
甲烷厌氧氧化
初级生产者
海洋学
生态系统
化学
生态学
细菌
地质学
生物
浮游植物
营养物
古生物学
作者
N.S. Hall,Wei Wen Wong,Rachael Lappan,Francesco Ricci,Katherine J. Jeppe,Ronnie N. Glud,Satoshi Kawaichi,Amelia‐Elena Rotaru,Chris Greening,Perran L. M. Cook
标识
DOI:10.1038/s41561-025-01768-3
摘要
Methanogenesis is thought to be limited to strictly anoxic environments. While oxygenated oceans are a known methane source, it is argued that methane production is driven by methylphosphonate-degrading bacteria and potentially other sources rather than by methanogenic archaea. Here we develop in situ monitoring and ex situ manipulation experiments, combined with biogeochemical, metagenomic and culture-based experiments, to show that methane is rapidly produced by archaea in frequently oxygenated sandy sediments. We show that methane emissions from sandy sediments are not inhibited by repeated oxygen exposure and suggest the activity is driven by aerotolerant methylotrophic methanogens (primarily Methanosarcinaceae) broadly distributed in the surface layers of sandy sediments. Moreover, we show that methane emissions are driven by methylated seaweed and seagrass metabolites, revealing a feedback loop between primary production and greenhouse gas emissions.
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