Isolation of a methyl-reducing methanogen outside the Euryarchaeota

K Wu, L Zhou, G Tahon, L Liu, J Li, J Zhang, F Zheng… - Nature, 2024 - nature.com
Methanogenic archaea are main contributors to methane emissions, and have a crucial role
in carbon cycling and global warming. Until recently, methanogens were confined to …

[HTML][HTML] Engineering microbiomes to enhance macroalgal health, biomass yield, and carbon sequestration

S Nair, Z Zhang, X Wang, B Zhang, N Jiao, Y Zhang - Green Carbon, 2024 - Elsevier
Macroalgae farming not only holds significant economic value but also contributes
substantially to carbon sequestration, and therefore has gained intensified attention globally …

Methanogens implicated by DNA evidence

M Kellom - Nature Reviews Microbiology, 2024 - nature.com
Methanogens implicated by DNA evidence | Nature Reviews Microbiology Skip to main content
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Genome reduction in novel, obligately methyl-reducing Methanosarcinales isolated from arthropod guts (Methanolapillus gen. nov. and Methanimicrococcus)

E Protasov, H Reeh, P Liu, A Poehlein… - FEMS Microbiology …, 2024 - academic.oup.com
Recent metagenomic studies have identified numerous lineages of hydrogen-dependent,
obligately methyl-reducing methanogens. Yet, only a few representatives have been …

Structure of an Archaeal Ribosome with a Divergent Active Site

AJ Nissley, Y Shulgina, RW Kivimae, BE Downing… - bioRxiv, 2024 - biorxiv.org
The ribosome is the universal translator of the genetic code and is shared across all life.
Despite divergence in ribosome structure over the course of evolution, the peptidyl …

A ubiquitous and diverse methanogenic community drives microbial methane cycling in eutrophic coastal sediments

AJ Wallenius, J Venetz, OM Zygadlowska, WK Lenstra… - bioRxiv, 2024 - biorxiv.org
Coastal areas are responsible for over 75% of global marine methane emissions and this
proportion is predicted to grow due to an increase in anthropogenically induced …

The methane-cycling microbiome in intact and degraded permafrost soils of the pan-Arctic

H Wang, E Lindemann, P Liebmann, M Varsadiya… - bioRxiv, 2024 - biorxiv.org
The methane-cycling microbiomes in Arctic permafrost-affected soils play crucial roles in the
production and consumption of this important greenhouse gas. However, little is known …

Dongxiang wild rice rhizomicrobiomes inhibit photosynthetic methanogenic microbes: a potential solution for reducing methane emissions in northeastern China

Y Pang, J Chang, Z Yao, C Wang, L Ye, J Zhang… - 2024 - researchsquare.com
Background Reducing greenhouse gas (GHG) emissions from agriculture is a crucial aspect
of global environmental governance. In particular, reducing methane (CH 4) emissions from …