Eine steril filtrierte Kaliumtellurit-Lösung, empfohlen zur selektiven Isolierung von Staphylokokken und Corneybakterien.Zusatz für: Fluka® 70195 (10 mL - 500 mL medium), Fluka 17245 (10 mL - 1000 mL medium), Fluka 17268 (10 mL - 500 mL medium)
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Empfohlen für die selektive Isolation von Staphylococci und Corynebacteria.
Steril filtrierte Kaliumtellurit-Lösung (1% in Wasser)
The respiratory chain of Pseudomonas pseudoalcaligenes KF707 in membranes isolated from cells grown in the presence or absence of the toxic oxyanion tellurite (TeO3(2-)) was examined. Aerobic growth in the absence of tellurite shows an NADH-dependent respiration which is 80%
Biometals : an international journal on the role of metal ions in biology, biochemistry, and medicine, 22(6), 1089-1094 (2009-09-18)
The effects of potassium tellurite on growth and survival of rho(+) and rho(0) Saccharomyces cerevisiae strains were investigated. Both rho(+) and rho(0) strains grew on a fermentable carbon source with up to 1.2 mM K(2)TeO(3), while rho(+) yeast cells grown
The Journal of general and applied microbiology, 56(6), 465-474 (2011-02-02)
A selective enrichment broth (SVV) was formulated to allow concurrent growth of Salmonella spp., V. parahaemolyticus, and V. cholerae. Potassium tellurite and sodium citrate were added as the inhibitors, while glucose, mannitol, anhydrous sodium sulfite and sodium pyruvate were employed
Biochemical, genetic, enzymatic and molecular approaches were used to demonstrate, for the first time, that tellurite (TeO(3) (2-)) toxicity in E. coli involves superoxide formation. This radical is derived, at least in part, from enzymatic TeO(3) (2-) reduction. This conclusion
Journal of clinical microbiology, 40(3), 922-925 (2002-03-07)
We characterized the carbohydrate-fermenting ability of 31 strains of Shiga toxin-producing Escherichia coli (STEC) O26 isolated from diarrhea patients in Aichi Prefecture, Japan, in order to establish selective isolation media for these strains. None of the 31 STEC O26 strains
Chromogenic media enable the selective detection of S. aureus, which produce bluish-green colonies that are clearly differentiated from other species.
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