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Membrane Lipid Composition of the Moderately Thermophilic Ammonia-Oxidizing Archaeon “ Candidatus Nitrosotenuis uzonensis” at Different Growth Temperatures

Citation
Bale et al. (2019). Applied and Environmental Microbiology 85 (20)
Names
Ca. Nitrosotenuis uzonensis
Abstract
For Thaumarchaeota , the ratio of their glycerol dialkyl glycerol tetraether (GDGT) lipids depends on growth temperature, a premise that forms the basis of the widely applied TEX 86 paleotemperature proxy. A thorough understanding of which GDGTs are produced by which Thaumarchaeota and what the effect of temperature is on their GDGT composition is essential for constraining the TEX 86 pro
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Análisis bioinformático del sistema flagelar de la alphaproteobacteria tipo rickettsia Candidatus Hepatobacter penaei. Bioinformatic analysis of the flagellar system of the rickettsia-like alphaproteobacteria Candidatus Hepatobacter penaei

Citation
Manuel Leyva et al. (2019). Revista de Biología Marina y Oceanografía 52 (1)
Names
Hepatobacter penaei Ts
Abstract
La presencia de sistemas flagelares es común en muchas bacterias de vida libre, sin embargo, estos han sido considerados ausentes en bacterias del orden Rickettsiales. Candidatus Hepatobacter penaei es una bacteria Rickettsial de origen marino descrita como un microorganismo con motilidad, propulsada por un sistema flagelar, el cual también facilita la infección. Siendo esta bacteria uno de los principales riesgos de infección en granjas camaronícolas. El objetivo de este trabajo fue determinar
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Insights into the ecological roles and evolution of methyl-coenzyme M reductase-containing hot spring Archaea

Citation
Hua et al. (2019). Nature Communications 10 (1)
Names
Ca. Methanoproducendum senex
Abstract
AbstractSeveral recent studies have shown the presence of genes for the key enzyme associated with archaeal methane/alkane metabolism, methyl-coenzyme M reductase (Mcr), in metagenome-assembled genomes (MAGs) divergent to existing archaeal lineages. Here, we study the mcr-containing archaeal MAGs from several hot springs, which reveal further expansion in the diversity of archaeal organisms performing methane/alkane metabolism. Significantly, an MAG basal to organisms from the phylum Thaumarchae
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Genome Sequence of “ Candidatus Nitrosocosmicus franklandus” C13, a Terrestrial Ammonia-Oxidizing Archaeon

Citation
Nicol et al. (2019). Microbiology Resource Announcements 8 (40)
Names
Ca. Nitrosocosmicus franklandus
Abstract
“ Candidatus Nitrosocosmicus franklandus” C13 is an ammonia-oxidizing archaeon (AOA) isolated from soil. Its complete genome is 2.84 Mb and possesses predicted AOA metabolic pathways for energy generation and carbon dioxide fixation but no typical surface layer (S-layer) proteins, only one ammonium transporter, and divergent A-type ATP synthase genes.