Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 2 de 2
Filter
Add more filters










Database
Language
Publication year range
1.
Article in Russian | MEDLINE | ID: mdl-6449817

ABSTRACT

The correlation between the colicine resistance of the reference and isolated strains of enterobacteria and their capacity for the biosynthesis of enterocheline, as well as the influence of exogenous enterocheline on the colicine sensitivity of enterobacteria were studied. In the wild strains of enterobacteria sensitivity to colicines was shown to have no correlation with capacity for the accumulation of catechol-type sideriphores. In some cases exogenous enterocheline prevents the lethal effect of colicines on the cultures of microorganisms capable of the biosynthesis of enterocheline.


Subject(s)
Colicins/pharmacology , Enterobacteriaceae/drug effects , Enterobactin/pharmacology , Serine/analogs & derivatives , Catechols/biosynthesis , Colicins/antagonists & inhibitors , Enterobacteriaceae/metabolism , Microbial Sensitivity Tests
2.
Zh Mikrobiol Epidemiol Immunobiol ; (3): 29-34, 1980 Mar.
Article in Russian | MEDLINE | ID: mdl-6998212

ABSTRACT

The capacity of Enterobacteriaceae strains cultivated in a synthetic medium for the biosynthesis of catechols and hydroxamates has been studied. Among the strains under study all strains of the genera Salmonella (8 strains), Escherichia (102 strains), Citrobacter (5 strains), Enterobacter (2 strains), Serratia (1 strain) synthesize catechols. In the genus Shigella (128 strains) all Sh. flexneri serovars (79 strains) do not synthesize catechols, other representatives of this genus synthesize iron-fixing metabolites The synthesis of catecholsin the pathogenic Escherichia serovars is 1.5-2 times lower than in the non-pathogenic and opportunistic enterobacterial strains. Among the representatives of the genus Klebsiella (82 strains) catechols are synthesized by Kl. pneumoniae (68 strains) and not synthesized by kl. rhinoscleromatis (5 strains) and Kl. ozaenae (9 strains). Catechols are not synthesized also by all Proteus organisms under study (12 strains). All the enterobacteria under study show no capacity for the accumulation of hydroxamates under the conditions of catechol synthesis. The intensity of the synthesis of catechols depends on the composition of the medium and the conditions of cultivation.


Subject(s)
Catechols/biosynthesis , Enterobacteriaceae/metabolism , Hydroxamic Acids/biosynthesis , Iron/metabolism , Escherichia coli/metabolism , Klebsiella/metabolism , Klebsiella pneumoniae/metabolism , Shigella/metabolism , Shigella boydii/metabolism , Shigella dysenteriae/metabolism , Shigella flexneri/metabolism , Shigella sonnei/metabolism , Species Specificity
SELECTION OF CITATIONS
SEARCH DETAIL
...