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Authors Frankel

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Frankel, Richard B.


Publications
3

CitationNamesAbstract
A Cultured Greigite-Producing Magnetotactic Bacterium in a Novel Group of Sulfate-Reducing Bacteria Lefèvre et al. (2011). Science 334 (6063) Desulfamplus Desulfamplus magnetovallimortis Ts
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Culture‐independent characterization of a novel, uncultivated magnetotactic member of the Nitrospirae phylum Lefèvre et al. (2011). Environmental Microbiology 13 (2) “Magnetoovum mohavensis” Ca. Magnetobacterium bavaricum
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Moderately Thermophilic Magnetotactic Bacteria from Hot Springs in Nevada Lefèvre et al. (2010). Applied and Environmental Microbiology 76 (11) “Thermomagnetovibrio paiutensis”
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A Cultured Greigite-Producing Magnetotactic Bacterium in a Novel Group of Sulfate-Reducing Bacteria
The crystal structure of biomineralized magnetic nanocrystals depends on environmental and genetic factors.
Culture‐independent characterization of a novel, uncultivated magnetotactic member of the Nitrospirae phylum
Summary A magnetotactic bacterium, designated strain LO‐1, of the Nitrospirae phylum was detected and concentrated from a number of freshwater and slightly brackish aquatic environments in southern Nevada. The closest phylogenetic relative to LO‐1 is Candidatus Magnetobacterium bavaricum based on a 91.2% identity in their 16S rRNA gene sequence. Chemical and cell profiles of a microcosm containing water and sediment show that cells of strain LO‐1 are confined to the oxic–anoxic interface and the upper regions of the anaerobic zone which in this case, occurred in the sediment. This microorganism is relatively large, ovoid in morphology and usually biomineralizes three braid‐like bundles of multiple chains of bullet‐shaped magnetosomes that appeared to be enclosed in a magnetosome membrane. Cells of LO‐1 had an unusual three‐layered unit membrane cell wall and contained several types of inclusions, some of which are sulfur‐rich. Strain LO‐1 is motile by means of a single bundle of sheathed flagella and exhibits the typical ‘wobbling’ motility and helical swimming (‘flight’) path of the magnetotactic cocci. This study and reports from others suggest that LO‐1‐like organisms are widespread in sediments of freshwater to brackish natural aquatic environments.
Moderately Thermophilic Magnetotactic Bacteria from Hot Springs in Nevada
ABSTRACT Populations of a moderately thermophilic magnetotactic bacterium were discovered in Great Boiling Springs, Nevada, ranging from 32 to 63°C. Cells were small, Gram-negative, vibrioid to helicoid in morphology, and biomineralized a chain of bullet-shaped magnetite magnetosomes. Phylogenetically, based on 16S rRNA gene sequencing, the organism belongs to the phylum Nitrospirae .
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