Microbes Could Survive in the Hidden Ocean of Saturn’s Moon Enceladus
A new LMU study shows that methane-producing archaea can grow under simulated Enceladus seafloor conditions, suggesting the moon's hidden ocean ...
A new LMU study shows that methane-producing archaea can grow under simulated Enceladus seafloor conditions, suggesting the moon's hidden ocean ...
A landmark benchmark of four open-source genome annotation tools across 156,033 prokaryotic genomes shows that Bakta excels on high-quality bacterial ...
Overexpressing the regulatory protein EnfR in the hydrogen-producing archaeon Thermococcus onnurineus NA1 boosts formate-dependent growth and hydrogen output by rebalancing ...
A metagenomic survey of tea rhizosphere soils across four Kangra Valley locations has revealed rich, site-specific communities of bacteria, fungi ...
Researchers have discovered ArmA, the first archaeal peptidoglycan-specific hydrolase, which reveals an unexpected cell wall architecture in methanogens and overturns ...
Researchers report that a thermophilic archaeon from hot spring sediments can directly convert long-chain fatty acids into methane through a ...
A machine-learning framework called symclatron uses genome content to predict which uncultivated bacteria and archaea live in close association with ...
© 2025 Scienmag - Science Magazine
© 2025 Scienmag - Science Magazine