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223


Isolation of an aerobic sulfur oxidizer from the SUP05/Arctic96BD-19 clade

Citation
Marshall, Morris (2013). The ISME Journal 7 (2)
Names
Pseudothioglobus singularis Ts Pseudothioglobus Ca. Thioglobus singularis
Abstract
Abstract Bacteria from the uncultured SUP05/Arctic96BD-19 clade of gamma proteobacterial sulfur oxidizers (GSOs) have the genetic potential to oxidize reduced sulfur and fix carbon in the tissues of clams and mussels, in oxygen minimum zones and throughout the deep ocean (>200 m). Here, we report isolation of the first cultured representative from this GSO clade. Closely related cultures were obtained from surface waters in Puget Sound and from the deep chlorophyll maximum
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Amantichitinum ursilacus gen. nov., sp. nov., a chitin-degrading bacterium isolated from soil

Citation
Moß et al. (2013). International Journal of Systematic and Evolutionary Microbiology 63 (Pt_1)
Names
Amantichitinum
Abstract
A bacterial strain named IGB-41T was isolated from a soil sample from an ant hill near Stuttgart, Germany. The strain was Gram-negative, rod-shaped, motile and facultatively anaerobic. Phylogenetic analysis based on 16S rRNA grouped the strain IGB-41T within the class Betaproteobacteria into the family Neisseriaceae togeth
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Fontimonas thermophila gen. nov., sp. nov., a moderately thermophilic bacterium isolated from a freshwater hot spring, and proposal of Solimonadaceae fam. nov. to replace Sinobacteraceae Zhou et al. 2008

Citation
Losey et al. (2013). International Journal of Systematic and Evolutionary Microbiology 63 (Pt_1)
Names
“Fontimonas brevis”
Abstract
A novel bacterial strain designated HA-01T was isolated from a freshwater terrestrial hot spring located at Hot Springs National Park, Arkansas, USA. Cells were Gram-negative-staining, rod-shaped, aerobic, chemo-organotrophic, oxidase- and catalase-positive, non-spore-forming and motile by means of a single polar flagellum. Growth occurred at 37–60 °C, with an optimum between 45 and 50 °C, and at pH 6.5–8.5, with an optimum between pH 6.5 and 7.0. Phylogenetic analysis based on 16S rRNA gene seq
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Genome Sequence of “Candidatus Microthrix parvicella” Bio17-1, a Long-Chain-Fatty-Acid-Accumulating Filamentous Actinobacterium from a Biological Wastewater Treatment Plant

Citation
Muller et al. (2012). Journal of Bacteriology 194 (23)
Names
Neomicrothrix parvicella Ts Neomicrothrix
Abstract
ABSTRACT “ Candidatus Microthrix” bacteria are deeply branching filamentous actinobacteria which occur at the water-air interface of biological wastewater treatment plants, where they are often responsible for foaming and bulking. Here, we report the first draft genome sequence of a strain from this genus: “ Candidatus Microthrix parvicella” strain Bio17-1.

Genome Sequence of “Candidatus Mycoplasma haemolamae” Strain Purdue, a Red Blood Cell Pathogen of Alpacas (Vicugna pacos) and Llamas (Lama glama)

Citation
Guimaraes et al. (2012). Journal of Bacteriology 194 (22)
Names
Ca. Mycoplasma haemolamae
Abstract
ABSTRACTWe report the complete genome sequence of “CandidatusMycoplasma haemolamae,” an endemic red-cell pathogen of camelids. The single, circular chromosome has 756,845 bp, a 39.3% G+C content, and 925 coding sequences (CDSs). A great proportion (49.1%) of these CDSs are organized into paralogous gene families, which can now be further explored with regard to antigenic variation.

Candidatus Thermochlorobacter aerophilum:’ an aerobic chlorophotoheterotrophic member of the phylum Chlorobi defined by metagenomics and metatranscriptomics

Citation
Liu et al. (2012). The ISME Journal 6 (10)
Names
Ca. Thermochlorobacter aerophilum
Abstract
Abstract An uncultured member of the phylum Chlorobi, provisionally named ‘Candidatus Thermochlorobacter aerophilum’, occurs in the microbial mats of alkaline siliceous hot springs at the Yellowstone National Park. ‘Ca. T. aerophilum’ was investigated through metagenomic and metatranscriptomic approaches. ‘Ca. T. aerophilum’ is a member of a novel, family-level lineage of Chlorobi, a chlorophototroph that synthesizes type-1 reaction centers and chlorosomes similar to cultivated re
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Magnetospira thiophila gen. nov., sp. nov., a marine magnetotactic bacterium that represents a novel lineage within the Rhodospirillaceae ( Alphaproteobacteria )

Citation
Williams et al. (2012). International Journal of Systematic and Evolutionary Microbiology 62 (Pt_10)
Names
Magnetospiraceae
Abstract
A marine, magnetotactic bacterium, designated strain MMS-1T, was isolated from mud and water from a salt marsh in Woods Hole, Massachusetts, USA, after enrichment in defined oxygen-concentration/redox-gradient medium. Strain MMS-1T is an obligate microaerophile capable of chemoorganoheterotrophic and chemolithoautotrophic growth. Optimal growth occurred at pH 7.0 and 24–26 °C. Chemolithoautotrophic growth occurred with thiosulfate as the electron donor and autotrophic carbon fixation was via the
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Bacteriocyte-associated gammaproteobacterial symbionts of the Adelges nordmannianae/piceae complex (Hemiptera: Adelgidae)

Citation
Toenshoff et al. (2012). The ISME Journal 6 (2)
Names
“Ecksteinia adelgidicola”
Abstract
Abstract Adelgids (Insecta: Hemiptera: Adelgidae) are known as severe pests of various conifers in North America, Canada, Europe and Asia. Here, we present the first molecular identification of bacteriocyte-associated symbionts in these plant sap-sucking insects. Three geographically distant populations of members of the Adelges nordmannianae/piceae complex, identified based on coI and ef1alpha gene sequences, were investigated. Electron and light microscopy revealed two morpholog
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Ultrastructure of the Denitrifying Methanotroph “Candidatus Methylomirabilis oxyfera,” a Novel Polygon-Shaped Bacterium

Citation
Wu et al. (2012). Journal of Bacteriology 194 (2)
Names
Methylomirabilis oxygeniifera Ts
Abstract
ABSTRACT “ Candidatus Methylomirabilis oxyfera” is a newly discovered denitrifying methanotroph that is unrelated to previously known methanotrophs. This bacterium is a member of the NC10 phylum and couples methane oxidation to denitrification through a newly discovered intra-aerobic pathway. In the present study, we report the first ultrastructural study of “ Ca . Methylomirabilis oxyfera” using scanning electron microscopy,
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