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Gastrointestinal bacteria interact with the host and each other through various mechanisms, including the production of extracellular vesicles (EVs). However, the composition and potential roles of EVs released by gut archaea are poorly understood. Here, we study EVs produced by four strains of h...

2025-07-01 | MTBLS12422 | MetaboLights
Methanogenic and methanotrophic archaea produce and consume the greenhouse gas methane, respectively, using the reversible enzyme methyl-coenzyme M reductase (Mcr). Recently, Mcr variants that can activate multi-carbon alkanes have been recovered from archaeal cultures. These enzymes, called alkyl-c...
2025-07-07 | MTBLS7727 | MetaboLights
Microbial symbiotic partners, such as those associated with reef-building corals, mediate biochemical transformations that influence host performance and survival. While evidence suggests microbial community composition partly accounts for differences in coral physiology, how these symbionts affect ...
2017-08-01 | MTBLS342 | MetaboLights
archaea Raw sequence reads
Archaea Raw sequence reads
archaea Raw sequence reads
archaea Raw sequence reads
the intact polar lipids of archaea from hypersaline lakes https://doi.org/10.3389/fmicb.2019.00377 https://doi.org/10.1016/j.syapm.2022.126336
ORGANISM(S): Halococcoides Cellulosivorans Natrarchaeobius Chitinivorans Natronocalculus Amylovorans Natranaeroarchaeum Aerophilus Natrarchaeobius Haloalkaliphilus Halalkaliarchaeum Desulfuricum Natronolimnobius Sulfurireducens Natronobiforma Cellulotropha 
2022-07-07 | MSV000089832 | MassIVE
By sensing changes in one or few environmental factors biological systems can anticipate future changes in multiple factors over a wide range of time scales (daily to seasonal). This anticipatory behavior is important to the fitness of diverse species, and in context of the diurnal cycle it is overa...
ORGANISM(S): Halobacterium salinarum 
By sensing changes in one or few environmental factors biological systems can anticipate future changes in multiple factors over a wide range of time scales (daily to seasonal). This anticipatory behavior is important to the fitness of diverse species, and in context of the diurnal cycle it is overa...
ORGANISM(S): Halobacterium salinarum 
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