Publications
4366

Sort by date names
Browse by authors subjects journals

Draft Genome Sequence of “Candidatus Izimaplasma sp.” Strain ZiA1, Obtained from a Toluene-Degrading and Iron-Reducing Enrichment Culture

Citation
Kim et al. (2018). Microbiology Resource Announcements 7 (8)
Names
Ca. Izimaplasma
Abstract
Here, we report the draft genome sequence of “ Candidatus Izimaplasma sp.” strain ZiA1 (1.88 Mb and 29.6% G+C content).

Revision of the Synechococcales (Cyanobacteria) through recognition of four families including Oculatellaceae fam. nov. and Trichocoleaceae fam. nov. and six new genera containing 14 species

Citation
Mai et al. (2018). Phytotaxa 365 (1)
Names
Trichocoleusaceae
Abstract
A total of 48 strains of thin, filamentous cyanobacteria in Synechococcales were studied by sequencing 16S rRNA and rpoC1 sequence fragments. We also carefully characterized a subset of these by morphology. Phylogenetic analysis of the 16S rRNA gene data using Bayesian inference of a large Synechococcales alignment (345 OTU’s) was in agreement with the phylogeny based on the rpoC1 gene for 59 OTU’s. Both indicated that the large family-level grouping formerly classified as the Leptolyngbyaceae c
Text

A methanotrophic archaeon couples anaerobic oxidation of methane to Fe(III) reduction

Citation
Cai et al. (2018). The ISME Journal 12 (8)
Names
“Methanoperedens ferrireducens” Ca. Methanoperedenaceae
Abstract
Abstract Microbially mediated anaerobic oxidation of methane (AOM) is a key process in the regulation of methane emissions to the atmosphere. Iron can serve as an electron acceptor for AOM, and it has been suggested that Fe(III)-dependent AOM potentially comprises a major global methane sink. Although it has been proposed that anaerobic methanotrophic (ANME) archaea can facilitate this process, their active metabolic pathways have not been confirmed. Here we report the enrichment
Text