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L S Samoĭlenko

Publications and source records attributed to L S Samoĭlenko.

5 recordsLinked to original sources

[Strains of Pseudomonas fluorescens 3 and Arthrobacter sp. 2--degradation of polycyclic aromatic hydrocarbons].

Pseudomonas fluorescences 3 and Arthrobacter sp. 2 strains were isolated from the association of microorganisms--destructors of oil hydrocarbons and were selected for their ability to grow on media with phenanthrene as the only source of carbon and energy. The P. fluorescens 3 strain is able to grow on naphthalene, fluorene, phenanthrene, and anthracene. Arthrobacter sp. 2 strain did not grow on naphthalene, but was able to destruct phenanthrene and fluorene. The destruction activity of these strains both in pure and mixed culture towards the latter compounds has been studied. The both strains destructed phenanthrene added into the medium in the amount of 0.2 g/l, and phenanthrene destruction by Pseudomonas fluorescences 3 achieved 98.5% in 6 days and that by Arthrobacter sp. 93.5% in 23 days. Bacterial growth has been evaluated while measuring protein concentration in samples. Bacteria were inoculated in quantities equivalent to 0.0015-0.0020 mg protein/l. The cell protein concentration achieved 35-40 mg/l for Pseudomonas fluorescences 3, and 85-92 mg/l for Arthrobacter sp. by the end of incubation.

Arthrobacter↗

[Microorganisms that break down alkyl sulfates].

The following bacteria assimilating alkyl sulphates as a sole source of carbon and energy were isolated from various substrates: Pseudomonas, Achromobacter, Flavobacterium, Citrobacter, Enterobacter. The bacteria decomposed sodium dodecyl sulphate at a high rate, and some of them, industrial preparations of alkyl sulphates. The ability to assimilate alkyl sulphates was tested in 257 collection cultures belonging to different taxonomic groups. Alkyl sulphates were found to be decomposed by heterotrophous gram-negative rod-like bacteria belonging to different families and genera. The frequency of bacteria destroying alkyl sulphates at a high rate was found most often in the Pseudomonas genus.

Bacteria↗

[Properties of a bacterial enzyme preparation of alkylsulfatase].

A preparation of primary alkyl sulfatase was obtained from the culture of Pseudomonas species 2T/1. It can hydrolyze alkyl sulfates, which belong to anion surface-active compounds, to sulfate ion and fatty alcohol, and as a result the harmful for biosphere property of the surface activity is gone. pH and temperature of the incubation mixture, the presence of ions of some bivalent metals and components of synthetic detergents (SD), composition of the buffer mixture and substrate concentration affect the rate of sodium dodecylsulfate (SDS) hydrolysis. The alkyl sulfatase preparation is relatively stable. The maximum rate of SDS hydrolysis was found to be at 70 degrees C. The preparation catalyzes the hydrolysis of some alkyl sulfate homologues and industrial alkyl sulfates. The temperature optimum of the preparation is 40 degrees C, the pH-optimum is 8.0-9.0.

Hydrogen-Ion Concentration↗