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E M Netyksa

Publications and source records attributed to E M Netyksa.

6 recordsLinked to original sources

[Site-specific restrictases from Bacillus thuringiensis var. Kumantoensis].

The efficiency of bacteriophages CP-54 and CP-55 plating on Bacillus thuringiensis var. kumantoensis H18 (Kum) is decreased about 10-fold as compared with the efficiency of plating on Bacillus thuringiensis var. galleriae H5 (Gal). Bacteriophages having propagated for one cycle in Kum cells might be further grown in this strain without growth restriction. Two site-specific restriction enzymes isolated from Bacillus thuringiensis var. kumantoensis were designated BtkI and BtkII. The endonuclease BtkI recognises the same nucleotide sequence CGCG in DNA as recognised by the restriction endonuclease FnuDII; BtkII recognises the same nucleotide sequence GATC as the endonuclease Sau3A.

Bacillus thuringiensis

[Comparative characteristics of spore-forming and asporogenic strains of Bacillus thuringiensis].

Comparative characteristics of sporogenous and asporogenous Bacillus thuringiensis strains is carried out. Asporogenous strains are found to differ from wild type strains in a number of criteria, including colony morphology, character of growth on rich and poor media and UV-sensitivity. Sporogenous strains form R colonies, they are more stable and more rare produce variants forming S colonies. S colonies are typical for asporogenous mutants, and under the cultivation in unfavourable conditions (elevated temperature, a shift of pH, a change of an incubation regime) asporogenous strains dissociate with a high frequency into R form. Initial strains, which are multiple auxotrophs, under certain conditions can form "prototrophic" revertants which are unstable when incubated on rich media. Suppressor mutation is supposed to be a possible mechanism of the origination of "prototrophs".

Bacillus thuringiensis

[Bacteriocin-like factor in Bacillus thuringiensis].

The paper describes Bacillus thuringiensis var. galleriae strains possessing a bacteriocin-like factor (factor K) which inhibits the cultures of a number of serotypes of Bac. thuringiensis. The K+ cultures exhibit no antibacterial effect on other gram-positive and gram-negative microorganisms. The maximal level of factor K is found by the 8--9th hour of cultivation. No correlation has been established between the strucutred elements in the preparations of K+ cultures and the antibacterial activity. Apparently, factor K can be transferred to other strains.

Antibiosis

[Electron microscopic study of the interaction between phages and Bacillus thuringiensis cells].

The interaction of phages belonging to different morphological groups with the cells of Bacillus thuringiensis var. galleriae R and S variants was studied. No adsorption of phages Tg11 and Tg18 on the cells of R variant was found upon infection in a liquid medium. What is characteristic of phage Tg11 is that it is predominantly adsorbed at the poles of S variant cells. Phage Tg18 particles are uniformly distributed along the perimeter of S variant cells. Phage Tg13 is adsorbed on the both variant cells. Phage aggregates with the elements of cell walls having a tetrahonal assembly of the subunits can be revealed in phage Tg13 lysates. The size of the subunits is 7 nm and the distance between their centers is 11 nm. A structured element, apparently the T-layer, is involved in the adsorption of phage Tg13 on the cells.

Adsorption

[Electron microscopic study of the cells of variants of Bacillus thuringiensis var. galleriae forming colonies with altered morphology].

Colonial-morphological variants of Bacillus thuringiensis var. Galleriae were studied by electron microscopy. The S variant was found to be asporogenous, whereas the R variant produced mature spores. Morphological modifications in the cell were followed in the course of sporulation. Spores were shown to have thin filamentous and tubular protrusions which had not been so far described in crystalliferous bacteria. Preparations from colonies of the R variant contained peculiar structures which resembled phage tails. A possible function of these structures is discussed.

Bacillus thuringiensis