Microbiology


Publications
891

Candidatus Desulfofervidus auxilii, a hydrogenotrophic sulfate‐reducing bacterium involved in the thermophilic anaerobic oxidation of methane

Citation
Krukenberg et al. (2016). Environmental Microbiology 18 (9)
Names
“Desulfofervidus auxilii” Ca. Desulfofervidus Ca. Desulfofervidaceae “Desulfofervidales”
Abstract
Summary The anaerobic oxidation of methane (AOM) is mediated by consortia of anaerobic methane‐oxidizing archaea (ANME) and their specific partner bacteria. In thermophilic AOM consortia enriched from Guaymas Basin, members of the ANME‐1 clade are associated with bacteria of the HotSeep‐1 cluster, which likely perform direct electron exchange via nanowires. The partner bacterium was enriched with hydrogen as sole electron donor and sulfate as electron accep
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Genomic and in situ investigations of the novel uncultured Chloroflexi associated with 0092 morphotype filamentous bulking in activated sludge

Citation
McIlroy et al. (2016). The ISME Journal 10 (9)
Names
Promineifilum breve Ts Promineifilum
Abstract
Abstract Overgrowth of filamentous bacteria in activated sludge wastewater treatment plants (WWTPs) leads to impaired sludge settleability, a condition known as bulking, which is a common operational problem worldwide. Filaments with the Eikelboom 0092 morphotype are commonly associated with such bulking episodes. Members of the uncultured B45 phylotype, which is embraced within the phylum Chloroflexi, were recently shown to exhibit this morphology. Although these organisms are am
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Syntrophic associations from hypersaline soda lakes converting organic acids and alcohols to methane at extremely haloalkaline conditions

Citation
Sorokin et al. (2016). Environmental Microbiology 18 (9)
Names
Ca. Syntrophocurvum alkaliphilum
Abstract
Summary Until now anaerobic oxidation of VFA at high salt‐pH has been demonstrated only at sulfate‐reducing conditions. Here, we present results of a microbiological investigation of anaerobic conversion of organic acids and alcohols at methanogenic conditions by syntrophic associations enriched from hypersaline soda lakes in Central Asia. Sediment incubation experiments showed active, albeit very slow, methane formation from acetate, propionate, butyrate a
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Candidatus Adiutrix intracellularis’, an endosymbiont of termite gut flagellates, is the first representative of a deep‐branching clade of Deltaproteobacteria and a putative homoacetogen

Citation
Ikeda‐Ohtsubo et al. (2016). Environmental Microbiology 18 (8)
Names
Ca. Adiutrix intracellularis Ca. Adiutrix “Adiutricales” “Adiutricaceae”
Abstract
Summary Termite gut flagellates are typically colonized by specific bacterial symbionts. Here we describe the phylogeny, ultrastructure and subcellular location of ‘ Candidatus Adiutrix intracellularis’, an intracellular symbiont of Trichonympha collaris in the termite Zootermopsis nevadensis . It represents a novel, deep‐branching clade o
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Hydroxylamine‐dependent anaerobic ammonium oxidation (anammox) by “ Candidatus Brocadia sinica”

Citation
Oshiki et al. (2016). Environmental Microbiology 18 (9)
Names
Ca. Brocadia sinica
Abstract
Summary Although metabolic pathways and associated enzymes of anaerobic ammonium oxidation (anammox) of ‘ Ca . Kuenenia stuttgartiensis’ have been studied, those of other anammox bacteria are still poorly understood. reduction to NO is considered to be the first step in the anammox metabolism of ‘ Ca . K. stuttgartiensis’, however, ‘
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Proteome Remodeling in Response to Sulfur Limitation in “ Candidatus Pelagibacter ubique”

Citation
Smith et al. (2016). mSystems 1 (4)
Names
Pelagibacter ubiqueversans Ts
Abstract
“ Ca . Pelagibacter ubique” is a key driver of marine biogeochemistry cycles and a model for understanding how minimal genomes evolved in free-living anucleate organisms. This study explores the unusual sulfur acquisition strategy that has evolved in these cells, which lack assimilatory sulfate reduction and instead rely on reduced sulfur compounds found in oxic marine environments to meet their cellular quotas. Our findings demonstrate that the sulfur acquis
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