Methane-producing Microbes

Methane-producing microbes are microorganisms, primarily anaerobic archaea called methanogens, that generate methane as a metabolic end product. Through methanogenesis, they obtain energy by reducing carbon dioxide with hydrogen or by converting acetate into methane and carbon dioxide, processes that occur in oxygen-free environments such as wetlands, sediments, animal digestive tracts, and engineered reactors. These microbes influence the global carbon cycle and contribute to natural and human-related greenhouse gas emissions. Their activity also supports anaerobic food webs and enables biogas production, making them important in studies of climate change, ecosystem function, waste treatment, and renewable energy.

Methane-producing Microbes - Related Videos

Research

JoVE Journal - Engineering
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Design and Use of a Full Flow Sampling System (FFS) for the Quantification of Methane Emissions

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Cited by 13 •

2016

We have designed, developed, and implemented a novel full flow sampling system (FFS) for quantification of methane emissions and greenhouse gases from across the natural gas supply chain.

Research

JoVE Journal - Biology

Extracting DNA from the Gut Microbes of the Termite (Zootermopsis Angusticollis) and Visualizing Gut Microbes

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Cited by 18 •

2007

This video illustrates the technique for extracting DNA from the species of microbes resident in the termite hindgut. The preparation of a wet mount slide, which is useful for visualizing the gut microbial community is also illustrated, and a tour through the species-rich gut environment is given.

Education

JoVE Core - Microbiology

Microbes and Methanogenesis

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2026

Methanogenesis is a critical microbial process in anaerobic ecosystems responsible for the biological production of methane, a potent greenhouse gas and valuable biofuel. This metabolic pathway is primarily facilitated by methanogenic archaea, which thrive in anoxic environments such as wetlands, sediments, and animal gastrointestinal tracts. The absence of oxygen in these habitats prevents aerobic respiration, thereby favoring alternative biochemical pathways for organic matter degradation.In...

Research

JoVE Journal - Environment
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The Use of an Automated System (GreenFeed) to Monitor Enteric Methane and Carbon Dioxide Emissions from Ruminant Animals

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Cited by 119 •

2015

Accuracy and precision of the techniques used to measure methane emissions from ruminant animals are critically important for the success of greenhouse gas mitigation efforts. This manuscript describes the principles and operation of an automated system to monitor methane and carbon dioxide mass fluxes from the breath of ruminant animals.

Preparation of Authigenic Pyrite from Methane-bearing Sediments for In Situ Sulfur Isotope Analysis Using SIMS

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Cited by 2 •

2017

Analyses of the sulfur isotopic composition (δ34S) of pyrite from methane-bearing sediments have typically focused on bulk samples. Here, we applied secondary ion mass spectroscopy to analyze the δ34S values of various pyrite generations to understand the diagenetic history of pyritization.

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