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Biomedical subjects

O I Keppen

Publications and source records attributed to O I Keppen.

7 recordsLinked to original sources

Proposal of Oscillochloridaceae fam. nov. on the basis of a phylogenetic analysis of the filamentous anoxygenic phototrophic bacteria, and emended description of Oscillochloris and Oscillochloris trichoides in comparison with further new isolates.

The nucleotide sequences of the genes of 16S rRNAs were determined for the type strain Oscillochloris trichoides DG-6T and three new strains of Oscillochloris-like mesophilic filamentous green bacteria. Two major clusters have been found within the family Chloroflexaceae by phylogenetic-analysis: one cluster includes thermophilic species of Chloroflexus and the second includes mesophilic strains of Oscillochloris. The degree of relatedness of these clusters was below an intergeneric level, having only 82.5-86.5% of 16S rDNA sequence similarity. These phylogenetic data correlate well with the significant physiological, biochemical and chemotaxonomical differences between members of both groups. Therefore, the Oscillochloris and Chloroflexus clusters should be considered as two separate families. The description of the new family, Oscillochloridaceae fam. nov., and emended descriptions of the genus Oscillochloris and the species Oscillochloris trichoides are presented.

Bacteria↗

[Morphological differentiation in non-sulfur purple bacteria].

Cell differentiation in non-sulphur purple bacteria is complicated, as compared to binary fission, during bud formation with production of hyphae and special resting cells of the exospore type, and can be demonstrated in the folowing series of microorganisms: Rhodopseudomonas sulfidophila leads to Rh. capsulata leads to Rh. acidophila leads to Rh. viridis and Rh. palustris leads to Rh. sulfoviridis leads to Rhodom. vannielii. Contrary to phototrophic bacteria multiplying by division, a distinct sequence in appearance of various morphological forms was found in bud-forming bacteria. Formation of specialized cells is regulated by the substrate concentration, accumulation of metabolites, and the population density. Mobile cells are not formed at all or partly, resting cells are formed sometimes at a higher rate, and vegetative cells contain reserve substances in all bud-forming phototrophic bacteria if conditions of the environment are not optimal.

Cell Division↗

[Characteristics of a new species of budding purple bacteria containing bacteriochlorophyll b].

A culture of phototrophic purple bacteria containing bacteriochlorophyll b has been isolated. The bacterium forms a sessile bud and, along with producing motile swarmer cells, it produces immobile oval cells surrounded with a slime capsule. It grows on media with simple organic substances in the presence of yeast extract or vitamins, under anaerobic conditions in the light or under microaerophilic conditions in the darkness. Besides organic substances, the culture assimilates hydrogen sulphide and thiosulphate as electron donors; it is incapable of assimilative sulphate reduction. In the light, the bacterium oxidizes thiosulphate to sulphates, without accumulation of molecular sulphur. The bacterium is classed as a new species of the genus Rhodopseudomonas--Rhodopseudomonas sulfoviridis nov. sp.

Bacteriochlorophylls↗

[Photometric method for determining ethanol].

A novel enzymatic photometric assay for ethanol determination using alcohol oxidase and peroxidase is described. The sensitivity of the method allows detecting ethanol in biological fluids (saliva and blood serum). Secondary alcohols and other organic compounds do not interfere with the assay. General-purpose spectrophotometers and photoelectric colorimeters can be used in the measurements. Methanol and propanol can also be determined by this technique.

Alcohol Oxidoreductases↗

[Photometric assay for methanol in the presence of ethanol].

A new enzymatic photometric assay for determination of methanol and ethanol in solutions containing both alcohols is described. The assay allows detecting methanol in the concentration range of tens ppm of in the presence of tens per cent of ethanol. The lower determination threshold for methanol is at least 0.002% in the presence of 45% ethanol, with a coefficient of variation of 0.02-0.05. General-purpose spectrophotometers and photoelectric colorimeters can be used in the measurements.

Enzymes↗

[Thiosulfate oxidation by nonsulfur purple bacteria].

The capability to oxidize thiosulfate was studied in 11 cultures of purple bacteria belonging to Rhodomicrobium vannielii, Rhodopseudmonas viridis, Rh. sphaeroides, Rh. capsulata, and Rhodospirillum rubrum. All the bacteria oxidized thiosulfate under aerobic conditions in the dark. The strains 2R, 8259, A1, A2 and D1 of Rh. sphaeroides oxidized thiosulfate under anaerobic conditions in the light, and the process was coupled with carbon dioxide fixation. All the strains contained thiosulfate reductase, and the majority of them possessed also the activity of thiosulfate oxidase and sulfite oxidase.

Aerobiosis↗

[Dark metabolism of Rhodospeudomonas sulfidophila].

A new strain of phototrophic purple bacterium Rhodopseudomonas sulfidophila RP-6 has been isolated from samples of the salty meromictic lake Repnoye. The bacterium utilizes thiosulphate yielding sulphates and assimilates molecular hydrogen in the darkness under aerobic conditions. Thiosulphate stimulates fixation of 14C-bicarbonate by the cells both in the light and darkness. Organic compounds are necessary for growth of the bacterium in the darkness. R. sulphidophila RP-6, R. palustus, and Rhodomicrobium vanniellii CO-1 do not grow in the presence of carbon monoxide neither in the light or in the darkness.

Aerobiosis↗